[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"\"}":3,"_public_publisher_byId_74758af8-90a7-45be-9d88-5365d9c018c8":865,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"totalCitation\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:74758af8-90a7-45be-9d88-5365d9c018c8,\"}":931},{"meta":4,"data":6},{"total":5},"117",[7,56,246,295,379,474,535,646,710,744],{"id":8,"createTime":9,"updateTime":10,"relativeEntities":11,"slug":12,"properties":13,"entityType":25,"verifyStatus":26,"verifyTime":27,"verifyNote":28,"languages":29,"translateLanguages":28,"viewCount":32,"subjectFields":33,"manageAffiliations":34,"indexDatabases":35,"url":36,"thumbnailPath":28,"statistic":28,"gsStatistic":37,"type":55,"analyzePriority":28},"f8d0bf97-8d89-482e-b58c-2fc481a0b79b","2025-10-27T06:27:08.591+00:00","2026-08-27T01:57:29.562+00:00",[],"T%E1%BA%A1p-ch%C3%AD-Khoa-h%E1%BB%8Dc-v%C3%A0-C%C3%B4ng-ngh%E1%BB%87-nhi%E1%BB%87t-%C4%91%E1%BB%9Bi",{"country":14,"issn":16,"title":18,"introduce":21,"gsId":23},{"VOID":15},"VN",{"VOID":17},"08667535",{"EN":19,"VI":20},"Journal of Tropical Science and Engineering","Tạp chí Khoa học và Công nghệ nhiệt đới",{"EN":22},"\u003Cp style=\"text-align:justify;\">&nbsp; &nbsp; &nbsp;Journal of Tropical Science and Engineering (JTSE) is a multidisciplinary scientific journal, licensed to operate as a print journal in 2012 and an electronic journal in 2024 (License No.1479\u002FGP-BTTTT dated August 20, 2012 and No.91\u002FGP-BTTTT dated April 9, 2024 issued by the Ministry of Information and Communications of Vietnam). The JTSE is headquartered in Hanoi.\u003C\u002Fp>\u003Cp style=\"text-align:justify;\">&nbsp; &nbsp; &nbsp; &nbsp; The JTSE is published every 3 months (4 issues\u002Fyear), publishing research results and overview articles in 3 groups of fields: Tropical Ecology and Environment; Chemistry and Material Sciences; Biomedicine and Pharmacy. In 2022, the JTSE registered the international identifier Digital Object Identifier (DOI): 10.58334\u002Fvrtc.jtst and assigned DOI codes to all articles of the journal. The members of the Editorial Board of the JTSE are prestigious scientists and leading scientists from Vietnam and many countries in the world. The JTSE has been recognized by the Vietnam State Council for Professorship to score scientific articles in Chemistry, Medicine and Biology with scores ranging from 0-0.75 points.\u003C\u002Fp>\u003Cp style=\"text-align:justify;\">&nbsp; &nbsp; &nbsp; Currently, the JTSE is building and perfecting a set of criteria and making efforts to join the List of prestigious&nbsp; international journals with a roadmap to enter Scopus and SCIE in the coming time.\u003C\u002Fp>",{"VOID":24},"MS2_GJQAAAAJ","PUBLISHER","VERIFIED","2025-10-27T06:27:25.058+00:00",null,[30,31],"VI","EN",0,[],[],[],"https:\u002F\u002Ftapchikhcnnd.com.vn",{"impactFactor":28,"impactFactorByYear":28,"i10Index":32,"i10IndexLast5Year":32,"totalPublication":38,"totalPublicationByYear":39,"totalCitation":43,"totalCitationByYear":44,"totalCitationPerPublication":52,"totalCitationPerPublicationByYear":53,"hindexLast5Year":42,"hindex":42},483,{"0":40,"2020":40,"2021":40,"2022":40,"2024":40,"2025":41,"2026":42},1,475,3,117,{"2017":40,"2018":40,"2019":45,"2020":46,"2021":46,"2022":47,"2023":48,"2024":49,"2025":50,"2026":51},4,5,11,6,7,53,15,0.24,{"2020":46,"2021":46,"2022":47,"2024":49,"2025":54,"2026":46},0.11,"JOURNAL",{"id":57,"createTime":58,"updateTime":10,"relativeEntities":59,"slug":60,"properties":61,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":69,"subjectFields":70,"manageAffiliations":71,"indexDatabases":84,"url":101,"thumbnailPath":28,"statistic":102,"gsStatistic":195,"type":55,"analyzePriority":28},"cc3aedc1-bd17-441e-b403-4be82349b362","2023-05-29T12:05:16.902+00:00",[],"Vietnam-Journal-of-Mechanics",{"country":62,"issn":63,"title":65,"gsId":67},{"VOID":15},{"VOID":64},"08667136",{"EN":66},"Vietnam Journal of Mechanics",{"VOID":68},"B98qpzgAAAAJ",29,[],[72],{"id":73,"createTime":28,"updateTime":28,"relativeEntities":74,"slug":28,"properties":75,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":82,"parentIds":83,"statistic":28},"5bf72910-eb8d-41eb-b358-ea294f24f765",[],{"title":76,"country":79,"abbreviation":80},{"EN":77,"VI":78},"Vietnam Academy of Science and Technology","Viện Hàn lâm Khoa học và Công nghệ Việt Nam",{"VOID":15},{"VOID":81},"VAST","https:\u002F\u002Fvast.gov.vn\u002F",[],[85],{"id":86,"indexDatabase":87,"url":97,"indexYears":98,"academicFieldIds":99,"indexDatabaseRanking":28},"61d05d3d-1119-4247-9062-3944e6a8afd5",{"id":88,"createTime":28,"updateTime":28,"relativeEntities":89,"label":90,"description":92,"key":94,"publicationTags":95,"standard":28},"7c6668cf-5dbb-472f-ac65-0e3d0d95e1c2",[],{"EN":91,"VI":91},"ACI - Asean Citation Index",{"EN":93,"VI":93},"Cơ sở dữ liệu ACI","aci",[96],"ACI","https:\u002F\u002Fasean-cites.org\u002Fjournal_info?jid=10758","2018-2022",[100],"007635a4-2624-49b8-a8f3-fec188e6a80e","http:\u002F\u002Fvjs.ac.vn\u002Findex.php\u002Fvjmech\u002Findex",{"impactFactor":32,"impactFactorByYear":103,"i10Index":122,"i10IndexLast5Year":123,"totalPublication":124,"totalPublicationByYear":125,"totalCitation":143,"totalCitationByYear":144,"totalCitationPerPublication":163,"totalCitationPerPublicationByYear":164,"hindexLast5Year":146,"hindex":146},{"1994":104,"1995":105,"1997":54,"1998":106,"1999":105,"2000":107,"2001":108,"2002":107,"2003":107,"2004":109,"2005":110,"2006":111,"2007":105,"2008":110,"2010":112,"2011":113,"2012":114,"2013":115,"2014":105,"2015":116,"2016":111,"2017":116,"2018":117,"2019":109,"2020":118,"2021":119,"2022":115,"2023":120,"2024":121},0.12,0.08,0.05,0.02,0.1,0.15,0.14,0.09,0.07,0.21,0.73,0.52,0.13,0.26,0.36,0.61,0.64,0.27,23,2,1046,{"1979":126,"1980":127,"1981":128,"1982":129,"1983":51,"1984":129,"1985":130,"1986":128,"1987":51,"1988":51,"1989":122,"1990":128,"1991":129,"1992":128,"1993":131,"1994":132,"1995":133,"1996":133,"1997":132,"1998":131,"1999":128,"2000":122,"2001":134,"2002":130,"2003":135,"2004":122,"2005":136,"2006":133,"2007":137,"2008":138,"2009":131,"2010":134,"2011":47,"2012":139,"2013":131,"2014":134,"2015":131,"2016":135,"2017":140,"2018":132,"2019":131,"2020":141,"2021":122,"2022":142,"2023":130,"2024":123},12,17,18,19,20,25,28,27,22,21,24,38,35,37,26,39,36,1403,{"1980":40,"1982":40,"1983":40,"1991":132,"1992":45,"1993":48,"1994":49,"1995":145,"1996":146,"1997":134,"1998":140,"1999":47,"2000":136,"2001":127,"2002":128,"2003":147,"2004":148,"2005":131,"2006":149,"2007":150,"2008":151,"2009":152,"2010":153,"2011":154,"2012":155,"2013":156,"2014":152,"2015":157,"2016":158,"2017":138,"2018":159,"2019":160,"2020":159,"2021":161,"2022":162,"2023":45},9,13,31,30,46,40,65,43,119,105,89,72,63,66,70,59,68,58,1.34,{"1980":165,"1982":106,"1983":112,"1991":166,"1992":167,"1993":52,"1994":168,"1995":169,"1996":170,"1997":171,"1998":172,"1999":119,"2000":172,"2001":173,"2002":174,"2003":175,"2004":176,"2005":172,"2006":177,"2007":178,"2008":179,"2009":180,"2010":181,"2011":182,"2012":183,"2013":184,"2014":185,"2015":186,"2016":187,"2017":188,"2018":189,"2019":190,"2020":191,"2021":192,"2022":193,"2023":194},0.06,1.47,0.22,0.25,0.33,0.48,0.79,1.04,0.77,0.9,1.48,1.3,1.7,1.05,1.86,1.72,5.41,9.55,2.41,2.88,1.95,2.52,3.14,1.35,2.5,2.36,1.79,2.96,1.61,0.2,{"impactFactor":28,"impactFactorByYear":28,"i10Index":196,"i10IndexLast5Year":128,"totalPublication":197,"totalPublicationByYear":198,"totalCitation":203,"totalCitationByYear":204,"totalCitationPerPublication":219,"totalCitationPerPublicationByYear":220,"hindexLast5Year":126,"hindex":199},42,1244,{"0":147,"1979":146,"1980":127,"1981":127,"1982":199,"1983":199,"1984":129,"1985":129,"1986":128,"1987":129,"1988":51,"1989":140,"1990":127,"1991":129,"1992":129,"1993":133,"1994":147,"1995":132,"1996":69,"1997":132,"1998":131,"1999":134,"2000":140,"2001":131,"2002":134,"2003":131,"2004":133,"2005":132,"2006":131,"2007":200,"2008":138,"2009":140,"2010":132,"2011":122,"2012":201,"2013":132,"2014":140,"2015":148,"2016":122,"2017":202,"2018":69,"2019":140,"2020":69,"2021":132,"2022":139,"2023":130,"2024":133,"2025":131,"2026":138},16,47,41,32,2194,{"1997":126,"1998":205,"1999":126,"2000":145,"2001":145,"2002":126,"2003":205,"2004":127,"2005":129,"2006":146,"2007":132,"2008":136,"2009":47,"2010":131,"2011":138,"2012":206,"2013":207,"2014":208,"2015":162,"2016":209,"2017":209,"2018":210,"2019":211,"2020":212,"2021":213,"2022":214,"2023":215,"2024":216,"2025":217,"2026":218},10,54,64,62,93,123,118,122,168,159,177,205,255,154,1.76,{"1997":221,"1998":222,"1999":223,"2000":224,"2001":118,"2002":223,"2003":222,"2004":225,"2005":226,"2006":115,"2007":227,"2008":228,"2009":229,"2010":230,"2011":231,"2012":232,"2013":233,"2014":234,"2015":235,"2016":236,"2017":237,"2018":238,"2019":239,"2020":240,"2021":48,"2022":241,"2023":242,"2024":243,"2025":244,"2026":245},0.43,0.4,0.55,0.35,0.63,0.68,0.6,0.69,0.42,0.89,1.52,1.32,2.29,2.38,1.93,4.04,2.91,4.24,4.54,4.21,4.3,8.85,7.59,10.2,4.4,{"id":247,"createTime":248,"updateTime":10,"relativeEntities":249,"slug":250,"properties":251,"entityType":25,"verifyStatus":26,"verifyTime":261,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":147,"subjectFields":262,"manageAffiliations":263,"indexDatabases":264,"url":273,"thumbnailPath":28,"statistic":274,"gsStatistic":290,"type":55,"analyzePriority":28},"b5209d2b-2258-40ef-8732-874e80fe24a5","2023-08-01T04:13:30.887+00:00",[],"VNU-Journal-of-Science-Medical-and-Pharmaceutical-Sciences",{"country":252,"eissn":253,"issn":255,"title":257,"gsId":259},{"VOID":15},{"VOID":254},"25881132",{"VOID":256},"26159309",{"EN":258},"VNU Journal of Science: Medical and Pharmaceutical Sciences",{"VOID":260},"nxupvWQAAAAJ","2023-08-01T04:16:22.633+00:00",[],[],[265],{"id":266,"indexDatabase":267,"url":272,"indexYears":28,"academicFieldIds":28,"indexDatabaseRanking":28},"1c684ac3-c7bf-4466-8841-3c6146083c3c",{"id":88,"createTime":28,"updateTime":28,"relativeEntities":268,"label":269,"description":270,"key":94,"publicationTags":271,"standard":28},[],{"EN":91,"VI":91},{"EN":93,"VI":93},[96],"https:\u002F\u002Fasean-cites.org\u002Fjournal_info?jid=11969","https:\u002F\u002Fjs.vnu.edu.vn\u002FMPS",{"impactFactor":32,"impactFactorByYear":275,"i10Index":32,"i10IndexLast5Year":32,"totalPublication":276,"totalPublicationByYear":277,"totalCitation":282,"totalCitationByYear":283,"totalCitationPerPublication":284,"totalCitationPerPublicationByYear":285,"hindexLast5Year":45,"hindex":45},{"2019":106,"2020":110,"2021":104,"2022":104,"2023":109,"2024":108},360,{"2016":140,"2017":278,"2018":69,"2019":148,"2020":279,"2021":200,"2022":280,"2023":281,"2024":200},34,48,49,50,163,{"2016":145,"2017":145,"2018":135,"2019":140,"2020":50,"2021":135,"2022":128,"2023":48},0.45,{"2016":224,"2017":117,"2018":286,"2019":287,"2020":288,"2021":284,"2022":289,"2023":104},0.72,0.87,1.1,0.37,{"impactFactor":28,"impactFactorByYear":28,"i10Index":32,"i10IndexLast5Year":32,"totalPublication":136,"totalPublicationByYear":291,"totalCitation":127,"totalCitationByYear":292,"totalCitationPerPublication":293,"totalCitationPerPublicationByYear":294,"hindexLast5Year":123,"hindex":42},{"0":123,"2014":40,"2015":40,"2016":130},{"2016":40,"2019":123,"2021":123,"2023":45,"2024":42,"2025":40,"2026":40},0.71,{"2016":106},{"id":296,"createTime":297,"updateTime":10,"relativeEntities":298,"slug":299,"properties":300,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":51,"subjectFields":310,"manageAffiliations":311,"indexDatabases":312,"url":313,"thumbnailPath":28,"statistic":314,"gsStatistic":349,"type":55,"analyzePriority":28},"e7ce3904-ad2d-4341-b39e-98ebe8da5908","2023-06-13T10:30:04.853+00:00",[],"Communications-in-Physics",{"country":301,"eissn":302,"issn":304,"title":306,"gsId":308},{"VOID":15},{"VOID":303},"28155947",{"VOID":305},"08863166",{"EN":307},"Communications in Physics",{"VOID":309},"FStER9AAAAAJ",[],[],[],"https:\u002F\u002Fvjs.ac.vn\u002Findex.php\u002Fcip",{"impactFactor":32,"impactFactorByYear":315,"i10Index":199,"i10IndexLast5Year":45,"totalPublication":321,"totalPublicationByYear":322,"totalCitation":326,"totalCitationByYear":327,"totalCitationPerPublication":335,"totalCitationPerPublicationByYear":336,"hindexLast5Year":126,"hindex":126},{"2008":110,"2009":316,"2010":165,"2011":317,"2012":317,"2013":112,"2014":318,"2015":105,"2016":108,"2017":116,"2018":318,"2019":52,"2020":319,"2021":284,"2022":320,"2023":116,"2024":222},0.3,0.03,0.16,0.34,0.28,738,{"2007":323,"2008":145,"2009":145,"2010":136,"2011":139,"2012":324,"2013":138,"2014":151,"2015":69,"2016":151,"2017":325,"2018":142,"2019":50,"2020":201,"2021":141,"2022":152,"2023":150,"2024":278,"2025":123},14,107,56,947,{"2007":148,"2008":49,"2009":49,"2010":127,"2011":328,"2012":155,"2013":278,"2014":329,"2015":206,"2016":330,"2017":331,"2018":332,"2019":333,"2020":334,"2021":127,"2022":132,"2023":148},52,94,86,129,76,91,106,1.28,{"2007":337,"2008":338,"2009":338,"2010":293,"2011":339,"2012":340,"2013":341,"2014":342,"2015":179,"2016":232,"2017":343,"2018":344,"2019":180,"2020":345,"2021":346,"2022":347,"2023":348},2.14,0.78,1.41,0.83,0.97,1.45,2.3,2.11,2.59,0.44,0.65,0.75,{"impactFactor":28,"impactFactorByYear":28,"i10Index":133,"i10IndexLast5Year":145,"totalPublication":350,"totalPublicationByYear":351,"totalCitation":355,"totalCitationByYear":356,"totalCitationPerPublication":363,"totalCitationPerPublicationByYear":364,"hindexLast5Year":145,"hindex":323},1117,{"0":48,"1972":40,"1991":127,"1992":51,"1993":49,"1994":47,"1995":323,"1996":42,"1997":40,"1998":146,"1999":146,"2000":205,"2001":47,"2002":128,"2003":136,"2004":132,"2005":136,"2006":148,"2007":141,"2008":149,"2009":352,"2010":353,"2011":196,"2012":208,"2013":280,"2014":354,"2015":150,"2016":328,"2017":137,"2018":142,"2019":325,"2020":152,"2021":139,"2022":139,"2023":142,"2024":148,"2025":147,"2026":132},33,44,92,1611,{"2004":46,"2005":357,"2006":47,"2007":47,"2008":126,"2009":140,"2010":69,"2011":147,"2012":147,"2013":147,"2014":208,"2015":353,"2016":201,"2017":280,"2018":161,"2019":358,"2020":212,"2021":331,"2022":212,"2023":359,"2024":360,"2025":361,"2026":362},8,85,153,178,188,132,1.44,{"2004":365,"2005":169,"2006":289,"2007":320,"2008":117,"2009":171,"2010":366,"2011":367,"2012":368,"2013":225,"2014":369,"2015":288,"2016":171,"2017":370,"2018":371,"2019":231,"2020":372,"2021":373,"2022":374,"2023":375,"2024":376,"2025":377,"2026":378},0.18,0.66,0.74,0.5,0.67,1.29,1.89,2.84,3.49,3.3,4.25,5.93,6.06,4.71,{"id":380,"createTime":381,"updateTime":382,"relativeEntities":383,"slug":384,"properties":385,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":28,"languages":394,"translateLanguages":28,"viewCount":127,"subjectFields":395,"manageAffiliations":396,"indexDatabases":404,"url":418,"thumbnailPath":28,"statistic":419,"gsStatistic":446,"type":55,"analyzePriority":28},"2300fd63-13a8-4ee9-92b0-d24d9e616c6b","2023-05-29T12:05:31.684+00:00","2026-08-27T01:57:29.561+00:00",[],"Journal-of-Computer-Science-and-Cybernetics",{"country":386,"issn":387,"title":389,"gsId":392},{"VOID":15},{"VOID":388},"18139663",{"EN":390,"VI":391},"Journal of Computer Science and Cybernetics","Tạp chí tin học và điều khiển học",{"VOID":393},"hVh9fuMAAAAJ",[30,31],[],[397],{"id":73,"createTime":28,"updateTime":28,"relativeEntities":398,"slug":28,"properties":399,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":82,"parentIds":403,"statistic":28},[],{"title":400,"country":401,"abbreviation":402},{"EN":77,"VI":78},{"VOID":15},{"VOID":81},[],[405],{"id":406,"indexDatabase":407,"url":412,"indexYears":413,"academicFieldIds":414,"indexDatabaseRanking":28},"0c897c2c-8ca4-4a7a-91b9-14955abc3043",{"id":88,"createTime":28,"updateTime":28,"relativeEntities":408,"label":409,"description":410,"key":94,"publicationTags":411,"standard":28},[],{"EN":91,"VI":91},{"EN":93,"VI":93},[96],"https:\u002F\u002Fasean-cites.org\u002Fjournal_info?jid=11305","2019-2021",[100,415,416,417],"a24a4497-b6ac-43f3-ae94-c044be819e49","b2d37900-0c9f-4074-a519-9ee0b570caa7","37da756c-1c5e-4925-87f2-a9bd3ce5859c","http:\u002F\u002Fvjs.ac.vn\u002Findex.php\u002Fjcc",{"impactFactor":32,"impactFactorByYear":420,"i10Index":129,"i10IndexLast5Year":42,"totalPublication":425,"totalPublicationByYear":426,"totalCitation":431,"totalCitationByYear":432,"totalCitationPerPublication":438,"totalCitationPerPublicationByYear":439,"hindexLast5Year":323,"hindex":323},{"2013":107,"2014":107,"2015":111,"2016":365,"2017":107,"2018":421,"2019":117,"2020":422,"2021":227,"2022":423,"2023":368,"2024":424},0.04,0.32,0.39,0.57,1184,{"2012":427,"2013":358,"2014":278,"2015":428,"2016":429,"2017":51,"2018":430,"2019":148,"2020":130,"2021":136,"2022":199,"2023":132,"2024":42},473,71,251,134,995,{"2012":433,"2013":434,"2014":434,"2015":333,"2016":435,"2017":436,"2018":437,"2019":211,"2020":281,"2021":434,"2022":126,"2023":152},149,45,114,51,232,0.84,{"2012":422,"2013":440,"2014":232,"2015":335,"2016":284,"2017":441,"2018":442,"2019":443,"2020":189,"2021":444,"2022":348,"2023":445},0.53,3.4,1.73,3.93,1.88,1.54,{"impactFactor":28,"impactFactorByYear":28,"i10Index":150,"i10IndexLast5Year":132,"totalPublication":447,"totalPublicationByYear":448,"totalCitation":449,"totalCitationByYear":450,"totalCitationPerPublication":192,"totalCitationPerPublicationByYear":460,"hindexLast5Year":51,"hindex":199},1105,{"0":47,"1981":40,"1985":199,"1986":135,"1987":136,"1988":323,"1989":126,"1990":199,"1991":127,"1992":126,"1993":47,"1994":129,"1995":130,"1996":132,"1997":142,"1998":148,"1999":201,"2000":196,"2001":353,"2002":353,"2003":352,"2004":132,"2005":131,"2006":148,"2007":147,"2008":133,"2009":131,"2010":139,"2011":201,"2012":281,"2013":142,"2014":202,"2015":69,"2016":140,"2017":136,"2018":140,"2019":134,"2020":134,"2021":133,"2022":134,"2023":134,"2024":136,"2025":49},3272,{"2007":145,"2008":323,"2009":46,"2010":48,"2011":129,"2012":148,"2013":140,"2014":69,"2015":152,"2016":160,"2017":162,"2018":451,"2019":452,"2020":453,"2021":454,"2022":455,"2023":456,"2024":457,"2025":458,"2026":459},109,173,236,318,398,469,442,440,297,{"2007":461,"2008":115,"2009":194,"2010":318,"2011":462,"2012":227,"2013":286,"2014":463,"2015":175,"2016":464,"2017":465,"2018":466,"2019":467,"2020":468,"2021":469,"2022":470,"2023":471,"2024":472,"2025":473},0.29,0.46,0.91,2.27,2.42,4.19,7.86,10.73,11.78,18.09,21.32,18.42,62.86,{"id":475,"createTime":476,"updateTime":382,"relativeEntities":477,"slug":478,"properties":479,"entityType":25,"verifyStatus":26,"verifyTime":491,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":202,"subjectFields":492,"manageAffiliations":493,"indexDatabases":509,"url":510,"thumbnailPath":28,"statistic":511,"gsStatistic":525,"type":55,"analyzePriority":28},"25b6bd10-676c-40c0-8dc3-356d1679a284","2023-05-19T02:22:33.430+00:00",[],"T%E1%BA%A1p-ch%C3%AD-Y-D%C6%B0%E1%BB%A3c-h%E1%BB%8Dc-C%E1%BA%A7n-Th%C6%A1",{"country":480,"issn":481,"title":483,"introduce":486,"gsId":489},{"VOID":15},{"VOID":482},"23541210",{"EN":484,"VI":485},"Cantho Journal of Medicine and Pharmacy","Tạp chí Y Dược học Cần Thơ",{"EN":487,"VI":488},"\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">04\u002F10\u002F2015 Ministry of Information and Communications allowed Can Tho journal of medicine and pharmacy to operate (102 \u002FGP-BTTTT)\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">07\u002F16\u002F2015 Can Tho journal of medicine and pharmacy is internationally recognized: ISSN 2354-1210\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">In 2016, The journal has been included in the list of medical science journals by The State Council for professorship which is awarded a work score of 0-0.5 points for a published article.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Can Tho Journal of Medicine and Pharmacy welcome original works that haven’t been submitted or published in other medical journals. Posts must contain content related to one of the journal’s categories.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The content published\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The journal is divided into 3 categories:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Scientific research article: are valuable scientific works, which have been researched and accepted.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Overview of medicine, biology and pharmacy: serving the objective of continuing training in the fields of medicine, biology and pharmacy; to systematize classical and modern knowledge.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Update information on new knowledge about medicine, biology, pharmacy in the country and in the world.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Scope\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Publication and introduction of scientific research in the fields:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Medicine (internal medicine, surgery, pediatrics, obstetrics and gynecology, odonto-stomatology, laboratory, oncology, traditional medicine, nursing).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Biology (genetics, biotechnology).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">+ Pharmacology (pharmaceutics, drug quality analysis-control, synthetic pharmaceutical chemistry, biochemistry, pharmacognosy, botany, clinical pharmacy).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- To enhance the quality of undergraduate, postgraduate education, scientifically researching and meet the necessary treatment in hospital.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Introducing the updated domestic and oversea information about science technology to promote scientific research and exchanging technology in local, other universities.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">- Exchanging pharmaceutical and medical information for social health developing in the Mekong Delta and Vietnam.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">The object\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Postgraduate students, student of Can Tho University of Medicine and Pharmacy, scientists from schools, research institutes, hospitals, health centers, pharmaceutical companies of the Mekong Delta; other provinces and regions in Vietnam and other country.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Address\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Headquarters of Can Tho Journal of Medicine and Pharmacy, located Scientific Research and International Cooperation Office: 179 Nguyen Van Cu Street, An Khanh Ward, Ninh Kieu District, Can Tho City, Vietnam.\u003C\u002Fspan>\u003C\u002Fp>","\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Ngày 16\u002F7\u002F2015, Tạp chí Y Dược học Cần Thơ được cấp chỉ số quốc tế: ISSN 2354-1210.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 4\u002F2016, Tạp chí đã được Hội đồng Giáo sư ngành Y đưa vào danh sách các tạp chí khoa học Y học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Năm 2020 Tạp chí Y Dược học Cần Thơ đã được phê duyệt vào danh mục của các Hội đồng Giáo sư ngành Dược học được tính điểm công trình 0-0,5 điểm cho một bài báo đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ ra 12 số\u002Fnăm, 180-200 trang\u002Fsố.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Từ tháng 12\u002F2022 Tạp chí Y Dược học Cần Thơ là thành viên của hệ thống Crossref và từ tháng 01\u002F2023 tạp chí thực hiện bình duyệt online kín 2 chiều nhằm tăng tính minh bạch, tin cậy của các công trình nghiên cứu khoa học và đảm bảo tốt nhất chất lượng khoa học của bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ, mục đích và phạm vi của tạp chí\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tôn chỉ và mục đích hoạt động của tạp chí: xuất bản nhằm mục đích phổ biến kết quả từ các đề tài nghiên cứu khoa học; giao lưu trao đổi khoa học, chia sẻ kinh nghiệm, học tập, đồng thời cập nhật thông tin khoa học mới trong các lĩnh vực y, sinh, dược học trong và ngoài nước.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phạm vi của tạp chí: Tạp chí xuất bản được chia thành 3 chuyên mục: (i) Bài báo nghiên cứu khoa học là kết quả công trình nghiên cứu khoa học có giá trị đã được triển khai nghiên cứu, (ii) Bài tổng quan y, sinh, dược học: phục vụ mục tiêu đào tạo liên tục trong lĩnh vực y, sinh, dược học; nhằm hệ thống hóa những kiến thức kinh điển và hiện đại; (iii) Thông tin cập nhật kiến thức mới về y, sinh, dược học trong nước và trên thế giới.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Chính sách truy cập mở\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ áp dụng chính sách truy cập mở đối với các bài báo đã xuất bản đến với độc giả, nhằm mở rộng cơ hội tiếp cận các kết quả nghiên cứu chất lượng cao và tăng cường trao đổi kiến thức. Tạp chí đăng tải trực tuyến (miễn phí) toàn văn các bài báo được công bố trên website của Tạp chí (https:\u002F\u002Ftapchi.ctump.edu.vn).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đạo đức xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ cam kết tuân thủ đạo đức xuất bản phù hợp với các hướng dẫn và tiêu chuẩn của the Committee on Publication Ethics (COPE), tuân thủ các nguyên tắc của COPE’s Core Practices, Best Practices Guidelines for Journal Editors và Guidelines on Good Publication Practices.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Bản thảo bài báo chỉ được chấp nhận khi được tác giả chịu trách nhiệm chính cam kết các nội dung sau: Các nội dung của bản thảo chưa được đăng tải toàn bộ hoặc một phần ở các tạp chí khác; Tất cả các tác giả đều có đóng góp một cách đáng kể vào quá trình nghiên cứu hoặc chuẩn bị bản thảo và cùng chịu trách nhiệm về các nội dung của bản thảo; Tuân thủ các biện pháp đảm bảo đạo đức nghiên cứu (ví dụ thỏa thuận đồng ý tham gia nghiên cứu).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Cam kết bảo mật\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí cam kết thực hiện và tuân thủ các quy định của luật và các văn bản hướng dẫn liên quan đến bảo mật thông tin cá nhân trên không gian mạng. Các thông tin mà người dùng (tác giả, độc giả, biên tập viên, người phản biện) nhập vào các biểu mẫu trên Hệ thống Quản lý xuất bản trực tuyến của tạp chí chỉ được sử dụng vào các mục đích đã được tuyên bố rõ ràng và sẽ không được cung cấp cho bất kỳ bên thứ ba nào khác, hay dùng vào bất kỳ mục đích nào khác.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Phí gửi bài\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng bài: 1.000.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Lệ phí gửi đăng nhanh: 1.500.000đ\u002Fbài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với tác giả là cán bộ viên chức thuộc Trường Đại học Y Dược Cần Thơ thì được hỗ trợ 50% lệ phí gửi đăng bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Đối với sinh viên thực hiện đề tài nghiên cứu khoa học cấp trường được hỗ trợ 100% lệ phí đăng bài ( Tác giả gửi đính kèm “ Quyết định về việc giao tổ chức thực hiện đề tài nghiên cứu khoa học cấp Trường của sinh viên”).\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Hình thức nộp lệ phí:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Tiền mặt:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Nộp trực tiếp tại Phòng Tài chính - Kế toán, Trường Đại học Y Dược Cần Thơ, số 179 Nguyễn Văn Cừ, P. An Khánh, Q. Ninh Kiều, thành phố Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Chuyển khoản:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tên Tài khoản: Trường ĐHYD Cần Thơ, Số TK: 0111000115668, tại ngân hàng Vietcombank chi nhánh Cần Thơ.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Thời gian: Áp dụng từ ngày 01\u002F02\u002F2023.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">* Phí gửi bài không được hoàn trả khi bài viết bị từ chối hoặc tác giả xin rút bài viết.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Quy trình phản biện bài báo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tạp chí Y Dược học Cần Thơ thực hiện quy trình phản biện kín hai chiều nghiêm ngặt. Danh tính của những người phản biện không được tiết lộ cho các tác giả và ngược lại. Quy trình thẩm định bài báo đăng gồm các bước sau:\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tiếp nhận bản thảo\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Tác giả liên hệ gửi bản thảo đến Tạp chí qua hệ thống trực tuyến tại website: https:\u002F\u002Ftapchi.ctump.edu.vn. Hướng dẫn về cách đăng ký, gửi bài và chuẩn bị bản thảo được cung cấp trên website của Tạp chí.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sàng lọc sơ bộ\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Sau khi Tòa soạn nhận được bài báo của tác giả, Ban Thư ký sẽ tiến hành kiểm tra sơ bộ bài báo (các yêu cầu về nội dung và hình thức). Những bài báo không đúng quy cách hoặc có nội dung không phù hợp hoặc vi phạm bản quyền sẽ bị từ chối (Ban Thư ký thông báo phản hồi đến tác giả trong vòng 1 tuần). Những bài báo đủ điều kiện, được Ban Thư ký tòa soạn chuyển đến Ban Biên tập có cùng chuyên môn với nội dung bài báo để đề xuất người phản biện. Thời gian kể từ khi Ban Biên tập nhận bài báo đến khi đề xuất người phản biện bài báo chậm nhất là 5 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Vòng phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký gửi bài và yêu cầu phản biện đến 02 phản biện độc lập.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Các phản biện gởi nhận xét cho Ban Thư ký. Thời gian từ khi gửi bài cho phản biện đến khi nhận ý kiến của phản biện tối đa là 20 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xử ký kết quả phản biện\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Nếu ý kiến đồng ý cho đăng và không cần chỉnh sửa, Ban Thư ký tiếp tục đăng bài theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Nếu ý kiến đồng ý đăng và cần chỉnh sửa, Ban Thư ký sẽ thông tin đến tác giả chỉnh sửa theo yêu cầu của người phản biện. Thời gian chỉnh sửa và gửi lại kéo dài không quá 2 tuần, từ khi tác giả bài báo nhận được thông tin (Quá trình này có thể lặp lại tối đa 2 lần\u002F1 bài báo). Khi có sự thống nhất, đồng ý của người phản biện; bài báo được tiếp tục đăng theo qui trình.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Những bài báo có chất lượng không đạt yêu cầu, cả 2 phản biện không đồng ý cho đăng sẽ bị Tòa soạn từ chối đăng.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">Xuất bản\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">1. Ban Thư ký tổng hợp các bản thảo đã được tác giả hoàn thiện sau thẩm định trình Ban Biên tập xem xét, Tổng Biên tập phê duyệt, quyết định bài đăng theo các tiêu chí: sự phù hợp nội dung với tôn chỉ và mục đích, thể loại bài viết (ưu tiên các bài có bài có nghiên cứu chuyên sâu, hàm lượng khoa học cao), đóng góp mới bài báo, bài báo được ưu tiên đăng trong số gần nhất của Tạp chí theo thứ tự: tính thời sự, chất lượng bài báo và thời gian gửi bài.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">2. Ban Biên tập và Ban Thư ký biên tập bản thảo, chế bản, đọc rà soát lỗi. Thời gian hoàn thành từ 10-15 ngày.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">3. Ban Thư ký có trách nhiệm thông báo cho tác giả bài báo (bằng e-mail) về tình hình phê duyệt bài báo, thời gian, số kỳ, tập xuất bản bài báo theo qui định.\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>\u003Cp>\u003Cspan style=\"color: rgb(0, 0, 0);\">4. Danh sách bài báo theo số Tạp chí được in ấn và phát hành trong năm định kỳ được công bố chính thức trên website: https:\u002F\u002Ftapchi.ctump.edu.vn\u003C\u002Fspan>\u003C\u002Fp>\u003Cp>\u003Cbr>\u003C\u002Fp>",{"VOID":490},"wcQ1uqwAAAAJ","2023-05-30T08:17:21.868+00:00",[],[494],{"id":495,"createTime":28,"updateTime":28,"relativeEntities":496,"slug":28,"properties":497,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":507,"parentIds":508,"statistic":28},"6413896b-eca9-442b-a73f-182a58a0ce40",[],{"title":498,"address":501,"country":504,"abbreviation":505},{"EN":499,"VI":500},"Can Tho University of Medicine and Pharmacy","Trường Đại học Y Dược Cần Thơ",{"EN":502,"VI":503},"No 179, Nguyen Van Cu street, An Khanh ward, Ninh Kieu district, Can Tho city, Vietnam","Số 179, đường Nguyễn Văn Cừ, phường An Khánh, quận Ninh Kiều, thành phố Cần Thơ, Việt Nam",{"VOID":15},{"VOID":506},"ctump","http:\u002F\u002Fwww.ctump.edu.vn\u002F",[],[],"https:\u002F\u002Ftapchi.ctump.edu.vn\u002Findex.php\u002Fctump",{"impactFactor":32,"impactFactorByYear":512,"i10Index":32,"i10IndexLast5Year":32,"totalPublication":514,"totalPublicationByYear":515,"totalCitation":520,"totalCitationByYear":521,"totalCitationPerPublication":108,"totalCitationPerPublicationByYear":523,"hindexLast5Year":45,"hindex":45},{"2022":513,"2023":111,"2024":106},0.01,1556,{"2020":47,"2021":516,"2022":517,"2023":518,"2024":519,"2025":122},57,306,801,358,161,{"2021":146,"2022":280,"2023":522},99,{"2021":524,"2022":318,"2023":104},0.23,{"impactFactor":28,"impactFactorByYear":28,"i10Index":123,"i10IndexLast5Year":123,"totalPublication":526,"totalPublicationByYear":527,"totalCitation":526,"totalCitationByYear":528,"totalCitationPerPublication":40,"totalCitationPerPublicationByYear":531,"hindexLast5Year":49,"hindex":49},476,{"0":205,"2019":123,"2021":139,"2022":459,"2023":451,"2024":357,"2025":49,"2026":48},{"2021":42,"2022":123,"2023":161,"2024":529,"2025":360,"2026":530},136,83,{"2021":105,"2022":513,"2023":532,"2024":127,"2025":533,"2026":534},0.62,25.43,13.83,{"id":536,"createTime":537,"updateTime":382,"relativeEntities":538,"slug":539,"properties":540,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":28,"languages":552,"translateLanguages":28,"viewCount":133,"subjectFields":553,"manageAffiliations":554,"indexDatabases":555,"url":556,"thumbnailPath":557,"statistic":558,"gsStatistic":594,"type":55,"analyzePriority":28},"6984a56a-db70-403b-9cc4-4013e1ceaffa","2023-05-09T06:47:40.346+00:00",[],"T%E1%BA%A1p%20ch%C3%AD%20Nghi%C3%AAn%20c%E1%BB%A9u%20n%C6%B0%E1%BB%9Bc%20ngo%C3%A0i",{"country":541,"issn":542,"title":544,"introduce":547,"gsId":550},{"VOID":15},{"VOID":543},"25252445",{"EN":545,"VI":546},"VNU Journal of Foreign Studies","Tạp chí Nghiên cứu nước ngoài",{"EN":548,"VI":549},"{\"ops\":[{\"insert\":\"\\n\\nThe \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science\"},{\"insert\":\"\\n was established in 1985 for the publication of national and international research papers in all fields of natural sciences and technology, social sciences and humanities. Since then, the journal has grown in quality, size and scope and now comprises a dozen of serials spanning academic research. In 2002, with the rapid expansion of the field of Foreign Languages and International Studies, the \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science\"},{\"insert\":\"\\n was delighted to announce the launch of the \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science: Foreign Studies\"},{\"insert\":\"\\n.\\n\\n\\nSince 2017, as a natural development from its predecessor \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science: Foreign Studies\"},{\"insert\":\"\\n, the\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\" \"},{\"attributes\":{\"italic\":true,\"bold\":true},\"insert\":\"VNU Journal of Foreign Studies \"},{\"insert\":\"\\ncontinues to be an official, independent publication of the University of Languages and International Studies (ULIS) under Vietnam National University (VNU).\\nThe\\n\"},{\"attributes\":{\"italic\":true,\"bold\":true},\"insert\":\" VNU Journal of Foreign Studies\"},{\"attributes\":{\"italic\":true},\"insert\":\" \"},{\"insert\":\"\\npublishes \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"blind\"},{\"insert\":\"\\n \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"peer-reviewed\"},{\"insert\":\"\\n research papers, discussions and reviews concerning:\\nLinguisticsForeign language educationInternational studiesRelated social sciences and humanities\\nBimonthly in 4 English editions and 2 Vietnamese editions in the current year in both print and electronic forms, the journal provides maximum exposure for published articles, making research available to all to read and share.\\n\\n\\n\"}]}","{\"ops\":[{\"attributes\":{\"italic\":true},\"insert\":\"Tạp chí Khoa học, Đại học Quốc gia Hà Nội\"},{\"insert\":\"\\n được thành lập năm 1985 với mục đích xuất bản các bài báo nghiên cứu trong nước và quốc tế về tất cả các lĩnh vực khoa học tự nhiên và công nghệ, khoa học xã hội và nhân văn. Kể từ đó, tạp chí đã phát triển về chất lượng, quy mô và phạm vi với hàng chục số báo liên quan đến nghiên cứu học thuật. Năm 2002, với sự phát triển nhanh chóng của lĩnh vực Ngoại ngữ và Quốc tế học, \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"Tạp chí Khoa học Đại học Quốc gia Hà Nội\"},{\"insert\":\"\\n đã vui mừng thông báo ra mắt Chuyên san \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"Nghiên cứu Nước ngoài.\"},{\"insert\":\"\\n\\n\\nKể từ năm 2017, như một sự kế thừa và phát triển từ tiền thân Chuyên san \\n\"},{\"attributes\":{\"italic\":true},\"insert\":\"Nghiên cứu Nước ngoài\"},{\"insert\":\"\\n của Tạp chí Khoa học, Đại học Quốc gia Hà Nội, \\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Tạp chí\"},{\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\" \"},{\"insert\":\"\\n\"},{\"attributes\":{\"italic\":true,\"bold\":true},\"insert\":\"Nghiên cứu nước ngoài \"},{\"insert\":\"\\ntiếp tục là ấn phẩm khoa học chính thức và độc lập của Trường Đại học Ngoại ngữ, Đại học Quốc gia Hà Nội.\\nTạp chí \\n\"},{\"attributes\":{\"italic\":true,\"bold\":true},\"insert\":\"Nghiên cứu nước ngoài\"},{\"insert\":\"\\n xuất bản các bài báo nghiên cứu, trao đổi và đánh giá đã được phản biện kín về:\\nNgôn ngữ họcGiảng dạy ngoại ngữ\u002Fngôn ngữQuốc tế họcCác ngành khoa học xã hội và nhân văn có liên quan\\nTạp chí xuất bản định kì 06 số\u002Fnăm (gồm 04 số tiếng Anh\u002Fnăm và 2 số tiếng Việt\u002Fnăm) dưới dạng bản in và bản điện tử. Tạp chí cung cấp khả năng tiếp cận tối đa tới các bài báo đã xuất bản nhằm giúp độc giả dễ dàng đọc và chia sẻ.\\n\"}]}",{"VOID":551},"jyihv3YAAAAJ",[30,31],[],[],[],"https:\u002F\u002Fjfs.ulis.vnu.edu.vn\u002Findex.php\u002Ffs","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F6984a56a-db70-403b-9cc4-4013e1ceaffa\u002F92693604f5caf63c64520c5c2cd756b5.jpg",{"impactFactor":32,"impactFactorByYear":559,"i10Index":560,"i10IndexLast5Year":205,"totalPublication":561,"totalPublicationByYear":562,"totalCitation":568,"totalCitationByYear":569,"totalCitationPerPublication":579,"totalCitationPerPublicationByYear":580,"hindexLast5Year":140,"hindex":140},{"2007":317,"2010":112,"2011":109,"2012":421,"2013":165,"2014":421,"2015":421,"2016":111,"2017":116,"2018":104,"2019":109,"2020":320,"2021":284,"2022":168,"2023":116,"2024":108},67,1200,{"2002":51,"2003":51,"2004":47,"2005":352,"2006":142,"2007":131,"2008":147,"2009":139,"2010":278,"2011":138,"2012":69,"2013":206,"2014":137,"2015":69,"2016":196,"2017":563,"2018":209,"2019":564,"2020":565,"2021":566,"2022":530,"2023":567,"2024":428,"2025":281},130,78,90,80,61,3204,{"2002":42,"2003":123,"2004":123,"2005":570,"2006":47,"2007":127,"2008":571,"2009":572,"2010":196,"2011":573,"2012":130,"2013":560,"2014":574,"2015":149,"2016":325,"2017":575,"2018":576,"2019":577,"2020":578,"2021":453,"2022":206,"2023":205,"2025":51},189,223,765,246,98,171,377,355,199,2.67,{"2002":194,"2003":116,"2004":365,"2005":581,"2006":582,"2007":226,"2008":583,"2009":584,"2010":585,"2011":586,"2012":228,"2013":585,"2014":587,"2015":588,"2016":589,"2017":232,"2018":590,"2019":591,"2020":592,"2021":593,"2022":347,"2023":318,"2025":316},5.73,0.31,7.19,20.68,1.24,7.03,2.58,1.59,1.33,4.05,4.55,2.21,2.95,{"impactFactor":28,"impactFactorByYear":28,"i10Index":595,"i10IndexLast5Year":596,"totalPublication":597,"totalPublicationByYear":598,"totalCitation":609,"totalCitationByYear":610,"totalCitationPerPublication":625,"totalCitationPerPublicationByYear":626,"hindexLast5Year":142,"hindex":152},379,311,2120,{"0":361,"1960":40,"1971":40,"1975":40,"1987":40,"1988":40,"1989":40,"1990":45,"1992":40,"1993":40,"1994":46,"1995":46,"1996":45,"1997":42,"1998":49,"1999":42,"2000":123,"2001":42,"2002":48,"2003":46,"2004":145,"2005":131,"2006":51,"2007":131,"2008":135,"2009":146,"2010":127,"2011":122,"2012":148,"2013":352,"2014":201,"2015":149,"2016":599,"2017":600,"2018":601,"2019":209,"2020":602,"2021":603,"2022":604,"2023":605,"2024":606,"2025":607,"2026":608},77,75,97,143,167,156,182,231,230,128,13225,{"2003":149,"2004":150,"2005":201,"2006":196,"2007":157,"2008":436,"2009":328,"2010":611,"2011":612,"2012":333,"2013":522,"2014":613,"2015":520,"2016":614,"2017":615,"2018":616,"2019":617,"2020":618,"2021":619,"2022":620,"2023":621,"2024":622,"2025":623,"2026":624},74,88,146,228,310,347,413,636,944,1261,1400,1846,2511,1882,6.24,{"2003":627,"2004":628,"2005":629,"2006":630,"2007":186,"2008":631,"2009":45,"2010":632,"2011":633,"2012":634,"2013":42,"2014":635,"2015":636,"2016":192,"2017":637,"2018":638,"2019":628,"2020":639,"2021":640,"2022":641,"2023":642,"2024":643,"2025":644,"2026":645},9.2,4.44,1.64,2.8,2.43,4.35,3.83,3.03,3.56,3.5,4.13,3.58,4.45,5.65,8.08,7.69,7.99,10.92,14.7,{"id":647,"createTime":648,"updateTime":382,"relativeEntities":649,"slug":650,"properties":651,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":664,"languages":665,"translateLanguages":28,"viewCount":142,"subjectFields":666,"manageAffiliations":667,"indexDatabases":668,"url":677,"thumbnailPath":678,"statistic":679,"gsStatistic":699,"type":55,"analyzePriority":28},"21d239d8-ac9d-48c7-a176-9d8aadc5eba5","2023-08-21T02:43:48.721+00:00",[],"Khoa-h%E1%BB%8Dc-%C4%90HQGHN-Khoa-h%E1%BB%8Dc-T%E1%BB%B1-nhi%C3%AAn-v%C3%A0-C%C3%B4ng-ngh%E1%BB%87",{"country":652,"eissn":653,"issn":655,"title":657,"introduce":660,"gsId":662},{"VOID":15},{"VOID":654},"25881140",{"VOID":656},"26159317",{"EN":658,"VI":659},"VNU Journal of Science: Natural Science and Technology","Khoa học ĐHQGHN: Khoa học Tự nhiên và Công nghệ",{"EN":661},"{\"ops\":[{\"insert\":\"The \"},{\"attributes\":{\"italic\":true},\"insert\":\"Journal\"},{\"insert\":\" \"},{\"attributes\":{\"italic\":true},\"insert\":\"of\"},{\"insert\":\" \"},{\"attributes\":{\"italic\":true},\"insert\":\"Science\"},{\"insert\":\" was established in 1985 for the publication of national and international research papers in all fields of natural sciences and technology, social sciences and humanities. Since then, the journal has grown in quality, size and scope and now comprises a dozen of serials spanning academic research.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"With the rapid expansion of the field of Economics, the VNU \"},{\"attributes\":{\"italic\":true},\"insert\":\"Journal\"},{\"insert\":\" \"},{\"attributes\":{\"italic\":true},\"insert\":\"of\"},{\"insert\":\" \"},{\"attributes\":{\"italic\":true},\"insert\":\"Science\"},{\"insert\":\" is delighted to announce the launch of the \"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science: Natural Sciences and Technology (JS: NST) \"},{\"insert\":\"since 1985. This serial publication provides researchers with the opportunity to publish research covering aspects in these areas in the popular \"},{\"attributes\":{\"italic\":true},\"insert\":\"VNU Journal of Science\"},{\"insert\":\" series.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"As a fully open access publication, the journal will provide maximum exposure for published articles, making the research available to all to read and share. The journal will be published quarterly in March, June, September and December.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Scope\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"JS: NST is an open access journal publishing double-blinded peer-reviewed research papers, communications and reviews dealing with Biology, Bio-technology, Chemistry, Chemical engineering, Energy, Environmental technology and Materials engineering.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Publication Ethics\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"VNUJS is committed to maintaining the highest standards of publication ethics and takes all possible measures against any publication malpractices. The journal follows the guidelines and recommendations of the Committee on Publication Ethics (C.O.P.E) to ensure ethical publishing practices.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Plagiarism is strictly prohibited and will not be tolerated. Any form of plagiarism, including but not limited to copying, paraphrasing, or reusing previously published work without proper attribution, will result in rejection of the manuscript and potential sanctions against the author. VNUJS utilizes DoIt as plagiarism detection software to verify the originality of submitted manuscripts.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"The publication ethics statement with full detail of the responsibilities of authors, reviewers and editors can be found \"},{\"attributes\":{\"bold\":true,\"color\":\"#464d50\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fjs.vnu.edu.vn\u002FNST\u002Fethics\"},\"insert\":\"here\"},{\"attributes\":{\"bold\":true},\"insert\":\".\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Peer Review Process\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Any manuscript followed the journal’s scope and author guideline will be assigned to the managing editors. All manuscripts have undergone editorial screening and anonymous double-blind peer-review by the at least one independent expert in the field. The managing editor makes an editorial decision, which is subject to endorsement by the Editor – in - Chief.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"The journal publishing process can be found in detail \"},{\"attributes\":{\"bold\":true,\"color\":\"#464d50\",\"background\":\"transparent\",\"link\":\"https:\u002F\u002Fdrive.google.com\u002Ffile\u002Fd\u002F136BOGahfq9_5BB3TzSBsLBkQKfCUe5yN\u002Fview?usp=share_link\"},\"insert\":\"here\"},{\"insert\":\".\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"\\n\"}]}",{"VOID":663},"ZfBridMAAAAJ","Admin update database",[30,31],[],[],[669],{"id":670,"indexDatabase":671,"url":676,"indexYears":28,"academicFieldIds":28,"indexDatabaseRanking":28},"6684da33-2cb9-49f9-8332-28f0bcd72e39",{"id":88,"createTime":28,"updateTime":28,"relativeEntities":672,"label":673,"description":674,"key":94,"publicationTags":675,"standard":28},[],{"EN":91,"VI":91},{"EN":93,"VI":93},[96],"https:\u002F\u002Fasean-cites.org\u002Fjournal_info?jid=11968","https:\u002F\u002Fjs.vnu.edu.vn\u002FNST","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F21d239d8-ac9d-48c7-a176-9d8aadc5eba5\u002Fb081d4211e382646c2cdc054ead551b3.jpg",{"impactFactor":32,"impactFactorByYear":680,"i10Index":130,"i10IndexLast5Year":40,"totalPublication":682,"totalPublicationByYear":683,"totalCitation":685,"totalCitationByYear":686,"totalCitationPerPublication":691,"totalCitationPerPublicationByYear":692,"hindexLast5Year":47,"hindex":47},{"2000":317,"2005":513,"2007":107,"2010":513,"2011":317,"2012":106,"2013":107,"2014":317,"2015":107,"2016":107,"2017":421,"2018":317,"2019":421,"2020":113,"2021":582,"2022":681,"2023":194,"2024":104},0.19,1700,{"1985":131,"1986":353,"1987":130,"1988":69,"1989":69,"1990":200,"1991":196,"1992":146,"1993":279,"1994":148,"1995":200,"1996":201,"1999":278,"2000":140,"2001":128,"2002":202,"2003":353,"2004":138,"2005":202,"2006":136,"2007":278,"2008":139,"2009":137,"2010":141,"2011":278,"2012":132,"2013":202,"2014":202,"2015":278,"2016":684,"2017":359,"2018":160,"2019":162,"2020":281,"2021":157,"2022":436,"2023":358,"2024":136,"2025":135},165,870,{"1995":123,"1999":123,"2001":45,"2002":130,"2003":40,"2004":123,"2005":42,"2007":69,"2008":687,"2009":352,"2010":688,"2011":137,"2012":127,"2013":47,"2014":46,"2015":146,"2016":331,"2017":689,"2018":331,"2019":690,"2020":353,"2021":567,"2022":130,"2023":357},82,60,55,102,0.51,{"1995":421,"1999":165,"2001":167,"2002":532,"2003":107,"2004":165,"2005":111,"2007":693,"2008":694,"2009":287,"2010":445,"2011":695,"2012":119,"2013":319,"2014":318,"2015":696,"2016":338,"2017":118,"2018":697,"2019":219,"2020":698,"2021":341,"2022":423,"2023":111},0.85,2.22,1.12,0.38,2.19,0.88,{"impactFactor":28,"impactFactorByYear":28,"i10Index":126,"i10IndexLast5Year":123,"totalPublication":570,"totalPublicationByYear":700,"totalCitation":701,"totalCitationByYear":702,"totalCitationPerPublication":703,"totalCitationPerPublicationByYear":704,"hindexLast5Year":46,"hindex":205},{"0":48,"1999":146,"2000":47,"2001":45,"2002":40,"2003":199,"2004":123,"2005":42,"2006":123,"2007":145,"2008":145,"2009":46,"2010":49,"2011":47,"2012":47,"2013":49,"2014":45,"2015":45,"2016":157,"2017":40},425,{"2008":42,"2009":357,"2010":47,"2011":51,"2012":199,"2013":135,"2014":323,"2015":51,"2016":278,"2017":69,"2018":69,"2019":137,"2020":142,"2021":140,"2022":148,"2023":122,"2024":202,"2025":135,"2026":126},2.25,{"2008":169,"2009":705,"2010":706,"2011":707,"2012":342,"2013":42,"2014":636,"2015":708,"2016":709,"2017":69},1.6,1.57,1.36,3.75,0.54,{"id":711,"createTime":712,"updateTime":382,"relativeEntities":713,"slug":714,"properties":715,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":664,"languages":28,"translateLanguages":28,"viewCount":150,"subjectFields":727,"manageAffiliations":728,"indexDatabases":729,"url":730,"thumbnailPath":731,"statistic":732,"gsStatistic":738,"type":55,"analyzePriority":28},"954132b5-ca74-461c-b819-45ad6e49a404","2023-08-17T03:30:52.301+00:00",[],"HPU2-Journal-of-Science-Natural-Sciences-and-Technology",{"country":716,"issn":717,"title":719,"introduce":722,"gsId":725},{"VOID":15},{"VOID":718},"28155637",{"EN":720,"VI":721},"HPU2 Journal of Science: Natural Sciences and Technology","TẠP CHÍ KHOA HỌC TRƯỜNG ĐHSP HÀ NỘI 2: CHUYÊN SAN KHOA HỌC TỰ NHIÊN VÀ CÔNG NGHỆ",{"EN":723,"VI":724},"{\"ops\":[{\"insert\":\"HPU2 journal of Science aims to provide an interdisciplinary platform for the dissemination of advances in sciences and technology. The journal publishes original papers of scientific or technological value in all areas of natural, social or educational sciences.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"The main interest of HPU2 Journal of Science: Natural sciences and technology is in papers that describe valuable findings in physics, mathematics, chemistry, biology; solving engineering or technological problems.\"},{\"attributes\":{\"align\":\"justify\",\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"insert\":\"The main interest of HPU2 Journal of Science: Social Sciences and Humanity is to facilitate the publication of high-quality papers in various areas of social sciences and studies for human development.\"},{\"attributes\":{\"align\":\"justify\",\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"insert\":\"The main interest of HPU2 Journal of Science: Educational Sciences is to publish papers in the field of educational sciences and applications of advances to education for improving and enhancing science education at all levels.\"},{\"attributes\":{\"align\":\"justify\",\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"insert\":\"Papers that are published by HPU2 Journal of Science are doubled-blind, peer-reviewed by at least two experts, are evaluated by the section editor and editor in chief.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Types of Articles\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Research articles\"},{\"attributes\":{\"align\":\"justify\",\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"insert\":\"Academic reports of original research that have never been published elsewhere in any languages. Manuscripts, where appropriate, should contain the following sections in the order: Title, Authors, Author affiliations, Email address of corresponding authors, Abstract, Keywords, Nomenclature (if any), Introduction, Experiment, Theory, Results and Discussion, Conclusions, Conflict of Interest, Acknowledgments (if any), References, Appendix (if any). Pre-published are to be formatted according to Templates (MS-Word version). \"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"Review articles\"},{\"attributes\":{\"align\":\"justify\",\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"insert\":\"In addition to invited reviews, literature reviews, systematic reviews, and critical reviews will be accepted for consideration. The manuscript should be composed and organized according to the required sequence: Titles, Author names, Affiliations, Email addresses, Abstract, Keywords, Main text, Conclusion, Conflict of Interest, Acknowledgments (if any), References. Although, the main text structure may vary based on the review subtopics, the articles should be formatted according to suitable Templates as research articles.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"\\n\"}]}","{\"ops\":[{\"insert\":\"Tạp chí Khoa học Trường ĐHSP Hà Nội 2 nhằm mục đích cung cấp một nền tảng liên ngành của sự phổ biến những tiến bộ của khoa học và công nghệ. Tạp chí xuất bản các bài báo gốc có giá trị khoa học hoặc công nghệ trong tất cả các lĩnh vực khoa học tự nhiên, xã hội hoặc giáo dục.\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Chuyên san Khoa học tự nhiên và công nghệ:\"},{\"insert\":\" Là các bài báo mô tả những phát hiện có giá trị trong vật lý, toán học, hóa học, sinh học; giải quyết các vấn đề kỹ thuật hoặc công nghệ.\"},{\"attributes\":{\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Chuyên san Khoa học Xã hội và Nhân văn:\"},{\"insert\":\" là các bài báo xuất bản chất lượng cao trong các lĩnh vực khác nhau của khoa học xã hội và nghiên cứu phát triển con người.\"},{\"attributes\":{\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Chuyên san Khoa học giáo dục:\"},{\"insert\":\" là các bài báo xuất bản trong lĩnh vực khoa học giáo dục và các ứng dụng của tiến bộ vào giáo dục để cải thiện và nâng cao giáo dục khoa học ở tất cả các cấp.\"},{\"attributes\":{\"list\":\"bullet\"},\"insert\":\"\\n\"},{\"insert\":\"Tạp chí trường ĐHSP Hà Nội 2 xuất bản được phản biện kín, xét duyệt bởi ít nhất 02 chuyên gia, và được đánh giá, chọn lựa từ ban biên tập và Tổng biên tập.\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Các loại bài báo\"},{\"insert\":\":\\nBài báo nghiên cứu:\"},{\"attributes\":{\"list\":\"ordered\"},\"insert\":\"\\n\"},{\"insert\":\"Báo cáo học thuật về nghiên cứu ban đầu chưa từng được xuất bản ở bất kỳ nơi nào, hay bằng bất kỳ ngôn ngữ nào khác. Bản thảo thích hợp, nên chứa các phần sau theo thứ tự: Tiêu đề, Tác giả, Liên kết tác giả, Địa chỉ email của tác giả tương ứng, Tóm tắt, Từ khóa, Danh pháp (nếu có), Giới thiệu, Thử nghiệm, Lý thuyết, Kết quả và thảo luận, Kết luận, Xung đột quan tâm, Lời cảm ơn (nếu có), Tài liệu tham khảo, Phụ lục (nếu có). Bản xuất bản trước phải được định dạng theo Mẫu (phiên bản MS-Word).\\n2. Bài báo tổng quan:\\nNgoài các bài phê bình được mời, các bài phê bình tài liệu, bài phê bình có hệ thống và bài phê bình sẽ được chấp nhận để xem xét. Bản thảo cần được soạn thảo và sắp xếp theo trình tự yêu cầu: Tên sách, Tên tác giả, Liên kết, Địa chỉ email, Tóm tắt, Từ khóa, Nội dung chính, Kết luận, Xung đột lợi ích, Lời cảm ơn (nếu có), Tài liệu tham khảo. Mặc dù, cấu trúc văn bản chính có thể thay đổi dựa trên các chủ đề phụ của bài đánh giá, các bài báo nên được định dạng theo các Mẫu phù hợp như các bài báo nghiên cứu.\\n\"}]}",{"VOID":726},"YPoBvsIAAAAJ",[],[],[],"https:\u002F\u002Fsj.hpu2.edu.vn\u002Findex.php\u002Fjournal","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F954132b5-ca74-461c-b819-45ad6e49a404\u002F2790ef1d0a7d7a40a504c2fc1647f670.jpg",{"impactFactor":32,"impactFactorByYear":733,"i10Index":32,"i10IndexLast5Year":32,"totalPublication":329,"totalPublicationByYear":735,"totalCitation":134,"totalCitationByYear":736,"totalCitationPerPublication":524,"totalCitationPerPublicationByYear":737,"hindexLast5Year":123,"hindex":123},{"2024":734},0.17,{"2022":136,"2023":278,"2024":142},{"2022":357,"2023":126,"2024":123},{"2022":169,"2023":224,"2024":165},{"impactFactor":28,"impactFactorByYear":28,"i10Index":45,"i10IndexLast5Year":45,"totalPublication":330,"totalPublicationByYear":739,"totalCitation":154,"totalCitationByYear":740,"totalCitationPerPublication":741,"totalCitationPerPublicationByYear":742,"hindexLast5Year":46,"hindex":46},{"0":123,"2022":134,"2023":136,"2024":69,"2025":145},{"2023":46,"2024":136,"2025":201,"2026":278},1.22,{"2023":113,"2024":340,"2025":743},4.56,{"id":745,"createTime":746,"updateTime":747,"relativeEntities":748,"slug":749,"properties":750,"entityType":25,"verifyStatus":26,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":69,"subjectFields":762,"manageAffiliations":763,"indexDatabases":771,"url":817,"thumbnailPath":28,"statistic":818,"gsStatistic":850,"type":55,"analyzePriority":28},"21ccdb34-414d-420f-8a60-a592a2fa848e","2023-05-29T10:42:53.358+00:00","2026-08-27T01:57:29.560+00:00",[],"Vietnam-Journal-of-Earth-Sciences",{"country":751,"eissn":752,"issn":754,"title":756,"introduce":758,"gsId":760},{"VOID":15},{"VOID":753},"26159783",{"VOID":755},"08667187",{"EN":757},"Vietnam Journal of Earth Sciences",{"EN":759},"Science of the Earth, formerly Vietnam Journal of Earth Sciences, is a peer-reviewed journal to publish high-quality articles on the entire range of earth sciences and the environment, focused on the Asia Pacific region and their correlations and connections to the globe. The journal publishes fundamental and applied research in earth sciences and the environment, including geology, geophysics, geography, soil science, hydrology, meteorology, oceanography, petroleum, geohazards, environmental sciences, environmental engineering, sustainable development, geoinformatics, geodesy, GIS, and remote sensing.",{"VOID":761},"5htfr3YAAAAJ",[],[764],{"id":73,"createTime":28,"updateTime":28,"relativeEntities":765,"slug":28,"properties":766,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":82,"parentIds":770,"statistic":28},[],{"title":767,"country":768,"abbreviation":769},{"EN":77,"VI":78},{"VOID":15},{"VOID":81},[],[772,789,800],{"id":773,"indexDatabase":774,"url":784,"indexYears":785,"academicFieldIds":786,"indexDatabaseRanking":788},"6ace2085-a177-4a27-b309-8813b832111e",{"id":775,"createTime":28,"updateTime":28,"relativeEntities":776,"label":777,"description":779,"key":781,"publicationTags":782,"standard":28},"3c7051d4-eb7d-4c57-a56b-36fc74c5d1e9",[],{"EN":778,"VI":778},"Scopus - Elsevier",{"EN":778,"VI":780},"Cơ sở dữ liệu Scopus thuộc Elsevier","scopus",[783],"SCOPUS","https:\u002F\u002Fwww.scopus.com\u002Fsourceid\u002F21101039869","2018-2024",[787],"1689391c-5702-4349-aaa7-d720ee4321fc","NONE",{"id":790,"indexDatabase":791,"url":796,"indexYears":797,"academicFieldIds":798,"indexDatabaseRanking":28},"dadb15a8-ee22-41c2-a287-49e969d9a998",{"id":88,"createTime":28,"updateTime":28,"relativeEntities":792,"label":793,"description":794,"key":94,"publicationTags":795,"standard":28},[],{"EN":91,"VI":91},{"EN":93,"VI":93},[96],"https:\u002F\u002Fasean-cites.org\u002Fjournal_info?jid=10629","2016-2022",[799],"e04f14cf-280b-4aa8-b711-b77ddd79cbaf",{"id":801,"indexDatabase":802,"url":814,"indexYears":28,"academicFieldIds":815,"indexDatabaseRanking":28},"06f278ee-37b9-41eb-a9b0-3d2d77fa502b",{"id":803,"createTime":28,"updateTime":28,"relativeEntities":804,"label":805,"description":807,"key":810,"publicationTags":811,"standard":28},"88bab0f7-443b-476c-a72a-7fa5222da393",[],{"EN":806,"VI":806},"ISI\u002FESCI  - Emerging Sources Citation Index",{"EN":808,"VI":809},"ESCI database","Cơ sở dữ liệu ESCI","esci",[812,813],"ESCI","ISI","https:\u002F\u002Fmjl.clarivate.com\u002Fsearch-results?issn=0866-7187",[816],"0db73426-2364-455f-81a4-efe0f91d712e","https:\u002F\u002Fvjs.ac.vn\u002Findex.php\u002Fjse\u002F",{"impactFactor":32,"impactFactorByYear":819,"i10Index":151,"i10IndexLast5Year":132,"totalPublication":824,"totalPublicationByYear":825,"totalCitation":827,"totalCitationByYear":828,"totalCitationPerPublication":838,"totalCitationPerPublicationByYear":839,"hindexLast5Year":129,"hindex":129},{"2007":513,"2008":513,"2010":513,"2011":107,"2012":513,"2013":513,"2014":317,"2015":107,"2016":54,"2017":168,"2018":222,"2019":820,"2020":821,"2021":371,"2022":445,"2023":822,"2024":823},1.03,1.08,1.49,1.43,1180,{"2000":689,"2001":688,"2002":281,"2003":160,"2004":279,"2005":325,"2006":516,"2007":137,"2008":200,"2009":162,"2010":436,"2011":826,"2012":434,"2013":689,"2014":280,"2015":152,"2016":150,"2017":148,"2018":352,"2019":147,"2020":152,"2021":69,"2022":148,"2023":280,"2024":139,"2025":45},79,2421,{"2000":205,"2001":51,"2002":145,"2003":146,"2004":126,"2005":51,"2006":130,"2007":128,"2008":127,"2009":152,"2010":122,"2011":137,"2012":567,"2013":200,"2014":829,"2015":687,"2016":830,"2017":831,"2018":832,"2019":833,"2020":834,"2021":835,"2022":836,"2023":837,"2024":145,"2025":40},73,197,219,380,281,328,148,183,160,2.05,{"2000":365,"2001":168,"2002":365,"2003":167,"2004":168,"2005":121,"2006":224,"2007":840,"2008":118,"2009":367,"2010":284,"2011":170,"2012":707,"2013":693,"2014":822,"2015":841,"2016":842,"2017":843,"2018":844,"2019":845,"2020":846,"2021":847,"2022":848,"2023":849,"2024":52,"2025":168},0.47,1.91,4.93,7.3,11.52,9.06,7.63,5.1,6.1,3.27,{"impactFactor":28,"impactFactorByYear":28,"i10Index":435,"i10IndexLast5Year":155,"totalPublication":130,"totalPublicationByYear":851,"totalCitation":852,"totalCitationByYear":853,"totalCitationPerPublication":860,"totalCitationPerPublicationByYear":861,"hindexLast5Year":136,"hindex":133},{"1017":40,"2015":40,"2016":123,"2017":42,"2018":42,"2019":40,"2020":45,"2022":123,"2023":123,"2024":40},3528,{"2014":323,"2015":140,"2016":201,"2017":158,"2018":522,"2019":613,"2020":854,"2021":855,"2022":701,"2023":856,"2024":857,"2025":858,"2026":859},280,403,436,525,589,366,176.4,{"2015":140,"2016":862,"2017":134,"2018":352,"2019":613,"2020":159,"2022":863,"2023":864,"2024":857},20.5,212.5,218,{"code":866,"data":867,"meta":28},"SUCCESS",{"id":868,"createTime":869,"updateTime":870,"relativeEntities":871,"slug":872,"properties":873,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":878,"manageAffiliations":891,"indexDatabases":899,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},"74758af8-90a7-45be-9d88-5365d9c018c8","2023-12-05T05:18:50.950+00:00","2025-11-21T10:02:19.764+00:00",[],"NeuroToxicology",{"issn":874,"title":876},{"VOID":875},"0161813X",{"EN":872},"PENDING",[879,885],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":881,"label":882,"description":884,"parentId":28,"standard":28,"scholarHubFieldId":28},"ad2df4fc-f3aa-41d5-b713-331b2df73f42",[],{"EN":883},"Neuroscience (miscellaneous)",{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":887,"label":888,"description":890,"parentId":28,"standard":28,"scholarHubFieldId":28},"304614db-b5ea-4999-9a2b-b6cb83b4488a",[],{"EN":889},"Toxicology",{},[892],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":894,"slug":28,"properties":895,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":898,"statistic":28},"c749757b-dddf-4e6f-9697-b9c441adc06c",[],{"title":896},{"EN":897},"Elsevier",[],[900,913],{"id":901,"indexDatabase":902,"url":907,"indexYears":908,"academicFieldIds":909,"indexDatabaseRanking":912},"ea163172-d8f5-4604-93e6-296a222642a3",{"id":775,"createTime":28,"updateTime":28,"relativeEntities":903,"label":904,"description":905,"key":781,"publicationTags":906,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],"https:\u002F\u002Fwww.scopus.com\u002Fsourceid\u002F18073","1979-2025",[910,911],"efd4c2fb-aeaa-4e42-8995-94fc907aae70","fcfab063-8c6c-4582-8a75-e1ae02713ec5","SCOPUS__Q2",{"id":914,"indexDatabase":915,"url":926,"indexYears":28,"academicFieldIds":927,"indexDatabaseRanking":28},"5545d6ac-7809-445e-9336-bb7dde1a7435",{"id":916,"createTime":28,"updateTime":28,"relativeEntities":917,"label":918,"description":920,"key":923,"publicationTags":924,"standard":28},"a4921856-b128-4d9f-8f1f-e80813d3bbd4",[],{"EN":919,"VI":919},"ISI\u002FSCIE - Science Citation Index Expanded",{"EN":921,"VI":922},"SCIE database","Cơ sở dữ liệu SCIE","scie",[925,813],"SCIE","https:\u002F\u002Fmjl.clarivate.com\u002Fsearch-results?issn=0161-813X",[928,929,930],"8d10567b-4ae4-42f8-b554-ff4a4364e08f","1ff2b686-ac7f-4d79-91fb-d25180fb47ca","2b943d65-24a8-4546-9232-a1e32c12cb6c",{"meta":932,"data":934},{"total":933},"1412",[935,1041,1156,1338,1610,1793,2013,2100,2304,2419],{"id":936,"createTime":937,"updateTime":938,"relativeEntities":939,"slug":940,"properties":941,"entityType":948,"verifyStatus":26,"verifyTime":949,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":951,"fullTextUrl":28,"authors":952,"publicationType":995,"publisherRelationship":996,"citationCount":28,"citationInfo":28,"publishDate":1037,"publishYear":1038,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":1039,"openAccess":28,"references":28,"isForceReanalyzing":1040},"001cf529-14b4-4187-a1f9-26e8fb0b43cf","2024-01-10T11:16:21.249+00:00","2025-01-25T16:39:58.280+00:00",[],"Elevated-whole-blood-manganese-is-associated-with-impaired-cognition-in-older-adults-NHANES-2013-2014-cycle",{"title":942,"references":944,"doi":946},{"EN":943},"Elevated whole blood manganese is associated with impaired cognition in older adults, NHANES 2013–2014 cycle",{"VOID":945},"Abbaspour, 2014, Review on iron and its importance for human health, J. Res. Med. Sci., 19, 164\nAgency for Toxic Substances and Disease Registry, 2012. Toxicological Profile for Manganese [WWW Document]. URL 〈https:\u002F\u002Fwwwn.cdc.gov\u002FTSP\u002FToxProfiles\u002FToxProfiles.aspx?id=102&tid=23〉 (Accessed 9.4.21).\nAlvarez-Bastida, 2013, The corrosive nature of manganese in drinking water, Sci. Total Environ., 447, 10, 10.1016\u002Fj.scitotenv.2013.01.005\nAnderson, 2017, Current understanding of iron homeostasis, Am. J. Clin. Nutr., 106, 1559S, 10.3945\u002Fajcn.117.155804\nAschner, 2000, Manganese: brain transport and emerging research needs, Environ. Health Perspect., 108, 429, 10.1289\u002Fehp.00108s3429\nBouchard, 2018, Low level exposure to manganese from drinking water and cognition in school-age children, Neurotoxicology, 64, 110, 10.1016\u002Fj.neuro.2017.07.024\nCarvalho, 2014, Elevated airborne manganese and low executive function in school-aged children in Brazil, Neurotoxicology, 45, 301, 10.1016\u002Fj.neuro.2013.11.006\nCenters for Disease Control and Prevention, 2016. NHANES 2013–2014 Data Doc. Codebook Freq. URL 〈https:\u002F\u002Fwwwn.cdc.gov\u002FNchs\u002FNhanes\u002F2013–2014\u002FPBCD_H.htm#Description_of_Laboratory_Methodology〉 (Accessed 1.30.22).\nCenters for Disease Control and Prevention, 2013. NHANES 2013–2014 Lab. Data. URL 〈https:\u002F\u002Fwwwn.cdc.gov\u002Fnchs\u002Fnhanes\u002Fsearch\u002Fdatapage.aspx?Component=Laboratory&CycleBeginYear=2013〉 (Accessed 2.9.22).\nCohen, 2016, Cognition and gait in older people, Maturitas, 93, 73, 10.1016\u002Fj.maturitas.2016.05.005\nEllingsen, 2008, A neurobehavioral study of current and former welders exposed to manganese, Neurotoxicology, 29, 48, 10.1016\u002Fj.neuro.2007.08.014\nGillispie, 2016, Soil weathering as an engine for manganese contamination of well water, Environ. Sci. Technol., 50, 9963, 10.1021\u002Facs.est.6b01686\nHare, 2016, Lead and manganese levels in serum and erythrocytes in Alzheimer’s disease and mild cognitive impairment: results from the australian imaging, biomarkers and lifestyle flagship study of ageing, Res. Outputs, 2014, 2021\nKim, 2011, Motor function in adults of an Ohio community with environmental manganese exposure, Neurotoxicology, 32, 606, 10.1016\u002Fj.neuro.2011.07.011\nLucchini, 2012, Tremor, olfactory and motor changes in Italian adolescents exposed to historical ferro-manganese emission, Neurotoxicology, 33, 687, 10.1016\u002Fj.neuro.2012.01.005\nLucchini, 2012, Inverse association of intellectual function with very low blood lead but not with manganese exposure in Italian adolescents, Environ. Res., 118, 65, 10.1016\u002Fj.envres.2012.08.003\nManolov, 2017, The role of iron homeostasis in Alzheimer’s disease, HSOA J. Alzheimer’s Neurodegener. Dis., 3, 1, 10.24966\u002FAND-9608\u002F100011\nMergler, 1999, Manganese neurotoxicity, a continuum of dysfunction: results from a community based study, Neurotoxicology, 20, 327\nMiller, 2013, Iron deficiency anemia: a common and curable disease, Cold Spring Harb. Perspect. Med., 3\nMurman, 2015, The impact of age on cognition, Semin. Hear., 36, 111, 10.1055\u002Fs-0035-1555115\nMurphy, 1991, Saturable transport of manganese(II) across the rat blood-brain barrier, J. Neurochem., 57, 948, 10.1111\u002Fj.1471-4159.1991.tb08242.x\nNational Academy of Sciences, 2001\nNyarko-Danquah, 2020, Manganese accumulation in the brain via various transporters and its neurotoxicity mechanisms, Molecules, 25, 5880, 10.3390\u002Fmolecules25245880\nR Core Team, 2009. Vienna, Austria, 2009.\nSahni, 2007, Case report: a metabolic disorder presenting as pediatric manganism, Environ. Health Perspect., 115, 1776, 10.1289\u002Fehp.10421\nSalvador, 2010, Iron and mechanisms of neurotoxicity, Int. J. Alzheimers Dis., 2011\nSantos-Burgoa, 2001, Exposure to manganese: health effects on the general population, a pilot study in central Mexico, Environ. Res., 85, 90, 10.1006\u002Fenrs.2000.4108\nSloot, 1994, Axonal transport of manganese and its relevance to selective neurotoxicity in the rat basal ganglia, Brain Res., 657, 124, 10.1016\u002F0006-8993(94)90959-8\nUS EPA, O, 2015. Drinking Water Regulations and Contaminants [WWW Document]. URL 〈https:\u002F\u002Fbeta.epa.gov\u002Fsdwa\u002Fdrinking-water-regulations-and-contaminants〉 (Accessed 8.5.21).\nViana, 2014, Noninvasive biomarkers of manganese exposure and neuropsychological effects in environmentally exposed adults in Brazil, Toxicol. Lett., 231, 169, 10.1016\u002Fj.toxlet.2014.06.018\nVollet, 2016, Manganese exposure and cognition across the lifespan: contemporary review and argument for biphasic dose-response health effects, Curr. Environ. Health Rep., 3, 392, 10.1007\u002Fs40572-016-0108-x\nWasserman, 2006, Water manganese exposure and children’s intellectual function in Araihazar, Bangladesh, Environ. Health Perspect., 114, 124, 10.1289\u002Fehp.8030",{"VOID":947},"10.1016\u002Fj.neuro.2022.04.016","PUBLICATION","2025-01-25T16:39:58.279+00:00","Auto Verify","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X2200064X",[953,969,982],{"id":954,"sortIndex":32,"researcher":28,"roles":955,"affiliations":957,"properties":966,"displayName":968,"givenName":28,"familyName":28},"50a33f0e-c74c-4cdd-8b19-5458116d9f36",[956],"AUTHOR",[958],{"id":959,"sortIndex":32,"affiliation":960,"properties":28},"f557a4ac-2aec-48ee-9a28-08000a870f24",{"id":959,"createTime":28,"updateTime":28,"relativeEntities":961,"slug":28,"properties":962,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":965,"statistic":28},[],{"title":963},{"VI":964},"Department of Nutrition, University of North Carolina Greensboro, Greensboro, NC 27402-6107, USA",[],{"title":967},{"VI":968},"Doreen Y. Larvie",{"id":970,"sortIndex":40,"researcher":28,"roles":971,"affiliations":972,"properties":979,"displayName":981,"givenName":28,"familyName":28},"14b966d2-7321-40fc-8e63-323a2afc1b07",[956],[973],{"id":959,"sortIndex":32,"affiliation":974,"properties":28},{"id":959,"createTime":28,"updateTime":28,"relativeEntities":975,"slug":28,"properties":976,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":978,"statistic":28},[],{"title":977},{"VI":964},[],{"title":980},{"VI":981},"Keith M. Erikson",{"id":983,"sortIndex":123,"researcher":28,"roles":984,"affiliations":985,"properties":992,"displayName":994,"givenName":28,"familyName":28},"b9ad2852-1b37-4c6f-b590-bebb05b6af7f",[956],[986],{"id":959,"sortIndex":32,"affiliation":987,"properties":28},{"id":959,"createTime":28,"updateTime":28,"relativeEntities":988,"slug":28,"properties":989,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":991,"statistic":28},[],{"title":990},{"VI":964},[],{"title":993},{"VI":994},"Seth M. Armah","ARTICLE",{"url":951,"publisher":997,"properties":1032},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":998,"slug":872,"properties":999,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":1002,"manageAffiliations":1011,"indexDatabases":1017,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1000,"title":1001},{"VOID":875},{"EN":872},[1003,1007],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":1004,"label":1005,"description":1006,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":1008,"label":1009,"description":1010,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[1012],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":1013,"slug":28,"properties":1014,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1016,"statistic":28},[],{"title":1015},{"EN":897},[],[1018,1025],{"id":901,"indexDatabase":1019,"url":907,"indexYears":908,"academicFieldIds":1024,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1020,"label":1021,"description":1022,"key":781,"publicationTags":1023,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":1026,"url":926,"indexYears":28,"academicFieldIds":1031,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":1027,"label":1028,"description":1029,"key":923,"publicationTags":1030,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":1033,"volume":1035},{"VOID":1034},"94-99",{"VOID":1036},"91","2022-07-01",2022,[912,925],false,{"id":1042,"createTime":1043,"updateTime":1044,"relativeEntities":1045,"slug":1046,"properties":1047,"entityType":948,"verifyStatus":26,"verifyTime":1044,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1054,"fullTextUrl":28,"authors":1055,"publicationType":995,"publisherRelationship":1112,"citationCount":28,"citationInfo":28,"publishDate":1153,"publishYear":1154,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":1155,"openAccess":28,"references":28,"isForceReanalyzing":1040},"003bdc43-06cf-4f24-91f3-e2cd8807acef","2024-01-16T17:13:37.744+00:00","2024-12-29T22:11:36.629+00:00",[],"Protective-effect-of-alpha-linoleic-acid-on-A%CE%B2-induced-oxidative-stress-neuroinflammation-and-memory-impairment-by-alteration-of-%CE%B17-nAChR-and-NMDAR-gene-expression-in-the-hippocampus-of-rats",{"title":1048,"references":1050,"doi":1052},{"EN":1049},"Protective effect of alpha-linoleic acid on Aβ-induced oxidative stress, neuroinflammation, and memory impairment by alteration of α7 nAChR and NMDAR gene expression in the hippocampus of rats",{"VOID":1051},"Akama, 2000, β-Amyloid stimulation of inducible nitric-oxide synthase in astrocytes is interleukin-1β-and tumor necrosis factor-α (TNFα)-dependent, and involves a TNFα receptor-associated factor-and NFκB-inducing kinase-dependent signaling mechanism, J. Biol. Chem., 275, 7918, 10.1074\u002Fjbc.275.11.7918\nAli, 2020, Oral administration of alpha linoleic acid rescues Aβ-induced Glia-mediated neuroinflammation and cognitive dysfunction in C57BL\u002F6N mice, Cells, 9, 667, 10.3390\u002Fcells9030667\nAndrieu, 2017, Effect of long-term omega 3 polyunsaturated fatty acid supplementation with or without multidomain intervention on cognitive function in elderly adults with memory complaints (MAPT): a randomised, placebo-controlled trial, Lancet Neurol., 16, 377, 10.1016\u002FS1474-4422(17)30040-6\nAsle-Rousta, 2013, Activation of sphingosine 1-phosphate receptor-1 by SEW2871 improves cognitive function in Alzheimer’s disease model rats, EXCLI J., 12, 449\nBaluchnejadmojarad, 2019, Safranal, an active ingredient of saffron, attenuates cognitive deficits in amyloid β-induced rat model of Alzheimer’s disease: underlying mechanisms, Metab. Brain Dis., 34, 1747, 10.1007\u002Fs11011-019-00481-6\nBarón-Mendoza, 2020, Relationship between the effect of polyunsaturated fatty acids (PUFAs) on brain plasticity and the improvement on cognition and behavior in individuals with autism spectrum disorder, Nutr. Neurosci., 24, 1\nBeeharry, 2003, Linoleic acid and antioxidants protect against DNA damage and apoptosis induced by palmitic acid, Mutat. Res., 530, 27, 10.1016\u002FS0027-5107(03)00134-9\nBuss, 2020, LTP-like plasticity is impaired in amyloid-positive amnestic MCI but independent of PET-amyloid burden, Neurobiol. Aging, 96, 109, 10.1016\u002Fj.neurobiolaging.2020.08.021\nButterfield, 2002, Lipid peroxidation and protein oxidation in Alzheimer’s disease brain: potential causes and consequences involving amyloid β-peptide-associated free radical oxidative stress, Radic. Biol. Med., 32, 1050, 10.1016\u002FS0891-5849(02)00794-3\nCheignon, 2018, Oxidative stress and the amyloid beta peptide in Alzheimer’s disease, Redox Biol., 14, 450, 10.1016\u002Fj.redox.2017.10.014\nCioanca, 2013, Cognitive-enhancing and antioxidant activities of inhaled coriander volatile oil in amyloid β (1–42) rat model of Alzheimer’s disease, Physiol. Behav., 120, 193, 10.1016\u002Fj.physbeh.2013.08.006\nDomingues, 2007, Toxicity of β-amyloid in HEK293 cells expressing NR1\u002FNR2A or NR1\u002FNR2B N-methyl-d-aspartate receptor subunits, Neurochem. Int., 50, 872, 10.1016\u002Fj.neuint.2007.03.001\nEgea, 2015, Anti-inflammatory role of microglial alpha7 nAChRs and its role in neuroprotection, Biochem. Pharmacol., 97, 463, 10.1016\u002Fj.bcp.2015.07.032\nHecker, 2009, Pivotal advance: up‐regulation of acetylcholine synthesis and paracrine cholinergic signaling in intravascular transplant leukocytes during rejection of rat renal allografts, J. Leukoc. Biol., 86, 13, 10.1189\u002Fjlb.1107722\nHunt, 2010, Protection of cortical neurons from excitotoxicity by conjugated linoleic acid, J. Neurochem., 115, 123, 10.1111\u002Fj.1471-4159.2010.06908.x\nKannan, 2000, Oxidative stress and apoptosis, Pathophysiology, 7, 153, 10.1016\u002FS0928-4680(00)00053-5\nKarimi-Sales, 2020, Neuroprotective effect of new nanochelating-based nano complex, ALZc3, against aβ (1–42)-induced toxicity in rat: a comparison with memantine, Pharm. Res., 37, 1, 10.1007\u002Fs11095-020-2773-6\nKarthick, 2016, Intrahippocampal administration of ibotenic acid induced cholinergic dysfunction via NR2A\u002FNR2B expression: implications of resveratrol against Alzheimer disease pathophysiology, Front. Mol. Neurosci., 9, 28, 10.3389\u002Ffnmol.2016.00028\nKarthick, 2019, Time-dependent effect of oligomeric amyloid-β (1–42)-induced hippocampal neurodegeneration in rat model of Alzheimer’s disease, Neurol. Res., 41, 139, 10.1080\u002F01616412.2018.1544745\nKuelzow, 2016, Impact of omega-3 fatty acid supplementation on memory functions in healthy older adults, J. Alzheimers Dis., 51, 713, 10.3233\u002FJAD-150886\nLan, 2017, The protective effect of Epimedii Folium and Curculiginis Rhizoma on Alzheimer’s disease by the inhibitions of NF-κB\u002FMAPK pathway and NLRP3 inflammasome, Oncotarget, 8, 43709, 10.18632\u002Foncotarget.12574\nLee, 2010, Inflammation and Alzheimer’s disease, Arch. Pharm. Res., 33, 1539, 10.1007\u002Fs12272-010-1006-7\nLiu, 2005, Alzheimer-specific epitopes of tau represent lipid peroxidation-induced conformations, Free Radic. Biol. Med., 38, 746, 10.1016\u002Fj.freeradbiomed.2004.11.005\nLong, 2019, Alzheimer disease: an update on pathobiology and treatment strategies, Cell, 179, 312, 10.1016\u002Fj.cell.2019.09.001\nLowry, 1951, Protein measurement with the Folin phenol reagent, J. Biol. Chem., 193, 265, 10.1016\u002FS0021-9258(19)52451-6\nLowry, 2020, The dietary fatty acids α-linolenic acid (ALA) and linoleic acid (LA) selectively inhibit microglial nitric oxide production, Mol. Cell. Neurosci., 109, 10.1016\u002Fj.mcn.2020.103569\nLykhmus, 2015, α7 nicotinic acetylcholine receptor-specific antibody induces inflammation and amyloid β 42 accumulation in the mouse brain to impair memory, PLoS One, 10, 10.1371\u002Fjournal.pone.0122706\nMa, 2019, Alpha 7 nicotinic acetylcholine receptor and its effects on Alzheimer’s disease, Neuropeptides, 73, 96, 10.1016\u002Fj.npep.2018.12.003\nMarissal-Arvy, 2014, Effect of a high-fat–high-fructose diet, stress and cinnamon on central expression of genes related to immune system, hypothalamic–pituitary–adrenocortical axis function and cerebral plasticity in rats, Br. J. Nutr., 111, 1190, 10.1017\u002FS0007114513003577\nMbiydzenyuy, 2018, Zinc and linoleic acid pre-treatment attenuates biochemical and histological changes in the midbrain of rats with rotenone-induced Parkinsonism, BMC Neurosci., 19, 1, 10.1186\u002Fs12868-018-0429-9\nNemeth, 2015, Sex-specific effects of diets high in unsaturated fatty acids on spatial learning and memory in guinea pigs, PLoS One, 10, 10.1371\u002Fjournal.pone.0140485\nÖhrvall, 1994, Malondialdehyde concentration in plasma is inversely correlated to the proportion of linoleic acid in serum lipoprotein lipids, Atherosclerosis, 108, 103, 10.1016\u002F0021-9150(94)90041-8\nPan, 2012, Alpha-linolenic acid is a potent neuroprotective agent against soman-induced neuropathology, Neurotoxicology, 33, 1219, 10.1016\u002Fj.neuro.2012.07.001\nPauls, 2018, Anti-inflammatory effects of α-linolenic acid in M1-like macrophages are associated with enhanced production of oxylipins from α-linolenic and linoleic acid, J. Nutr. Biochem., 57, 121, 10.1016\u002Fj.jnutbio.2018.03.020\nPaxinos, 2007\nPoletto, 2015, Oleic and linoleic fatty acids downregulate Slc2a4\u002FGLUT4 expression via NFKB and SREBP1 in skeletal muscle cells, Mol. Cell. Endocrinol., 401, 65, 10.1016\u002Fj.mce.2014.12.001\nPuzzo, 2008, Picomolar amyloid-β positively modulates synaptic plasticity and memory in hippocampus, J. Neurosci., 28, 14537, 10.1523\u002FJNEUROSCI.2692-08.2008\nRammes, 2018, The NMDA receptor antagonist Radiprodil reverses the synaptotoxic effects of different amyloid-beta (Aβ) species on long-term potentiation (LTP), Neuropharmacology, 140, 184, 10.1016\u002Fj.neuropharm.2018.07.021\nShallie, 2020, Memory decline correlates with increased plasma cytokines in amyloid-beta (1–42) rat model of Alzheimer’s disease, Neurobiol. Learn. Mem., 169, 10.1016\u002Fj.nlm.2020.107187\nShankar, 2007, Natural oligomers of the Alzheimer amyloid-β protein induce reversible synapse loss by modulating an NMDA-type glutamate receptor-dependent signaling pathway, J. Neurosci., 27, 2866, 10.1523\u002FJNEUROSCI.4970-06.2007\nShi, 2016, Upstream regulators and downstream effectors of NF-κB in Alzheimer’s disease, J. Neurol. Sci., 366, 127, 10.1016\u002Fj.jns.2016.05.022\nSun, 2019, Chronic mild hypoxia promotes hippocampal neurogenesis involving Notch1 signaling in epileptic rats, Brain Res., 1714, 88, 10.1016\u002Fj.brainres.2019.02.011\nTackenberg, 2013, NMDA receptor subunit composition determines beta-amyloid-induced neurodegeneration and synaptic loss, Cell Death Dis., 4, e608, 10.1038\u002Fcddis.2013.129\nThomazeau, 2017, Nutritional n-3 PUFA deficiency abolishes endocannabinoid gating of hippocampal long-term potentiation, Cereb. Cortex, 27, 2571\nWang, 2011, Hydrogen-rich saline reduces oxidative stress and inflammation by inhibit of JNK and NF-κB activation in a rat model of amyloid-beta-induced Alzheimer’s disease, Neurosci. Lett., 491, 127, 10.1016\u002Fj.neulet.2011.01.022\nWang, 2016, Evaluation of tau imaging in staging Alzheimer disease and revealing interactions between β-amyloid and tauopathy, JAMA Neurol., 73, 1070, 10.1001\u002Fjamaneurol.2016.2078\nWhelan, 2013, Linoleic acid, Adv. Nutr., 4, 311, 10.3945\u002Fan.113.003772\nYaguchi, 2010, Linoleic acid derivative DCP-LA protects neurons from oxidative stress-induced apoptosis by inhibiting caspase-3\u002F-9 activation, Neurochem. Res., 35, 712, 10.1007\u002Fs11064-010-0124-4\nYamamoto, 2005, The linoleic acid derivative FR236924 facilitates hippocampal synaptic transmission by enhancing activity of presynaptic α7 acetylcholine receptors on the glutamatergic terminals, Neuroscience, 130, 207, 10.1016\u002Fj.neuroscience.2004.09.016\nZhang, 2017, An increased extrasynaptic NMDA tone inhibits A‐type K+ current and increases excitability of hypothalamic neurosecretory neurons in hypertensive rats, J. Physiol., 595, 4647, 10.1113\u002FJP274327\nZugno, 2015, Omega-3 fatty acids prevent the ketamine-induced increase in acetylcholinesterase activity in an animal model of schizophrenia, Life Sci., 121, 65, 10.1016\u002Fj.lfs.2014.11.025",{"VOID":1053},"10.1016\u002Fj.neuro.2021.06.002","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X21000644",[1056,1071,1084,1097],{"id":1057,"sortIndex":32,"researcher":28,"roles":1058,"affiliations":1059,"properties":1068,"displayName":1070,"givenName":28,"familyName":28},"bee87355-dd93-4d5d-bf59-2a725d2de2d3",[956],[1060],{"id":1061,"sortIndex":32,"affiliation":1062,"properties":28},"1d7d2476-1157-4b2f-85e0-7abda16a07c5",{"id":1061,"createTime":28,"updateTime":28,"relativeEntities":1063,"slug":28,"properties":1064,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1067,"statistic":28},[],{"title":1065},{"VI":1066},"Department of Physiology, Zanjan Branch, Islamic Azad University, Zanjan, Iran",[],{"title":1069},{"VI":1070},"Nahaleh Tofighi",{"id":1072,"sortIndex":40,"researcher":28,"roles":1073,"affiliations":1074,"properties":1081,"displayName":1083,"givenName":28,"familyName":28},"efdf31b7-d313-474a-b80f-b0984cfc1ada",[956],[1075],{"id":1061,"sortIndex":32,"affiliation":1076,"properties":28},{"id":1061,"createTime":28,"updateTime":28,"relativeEntities":1077,"slug":28,"properties":1078,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1080,"statistic":28},[],{"title":1079},{"VI":1066},[],{"title":1082},{"VI":1083},"Masoumeh Asle-Rousta",{"id":1085,"sortIndex":123,"researcher":28,"roles":1086,"affiliations":1087,"properties":1094,"displayName":1096,"givenName":28,"familyName":28},"cb70fc5e-c527-47e6-8df0-7f1f88ecffd6",[956],[1088],{"id":1061,"sortIndex":32,"affiliation":1089,"properties":28},{"id":1061,"createTime":28,"updateTime":28,"relativeEntities":1090,"slug":28,"properties":1091,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1093,"statistic":28},[],{"title":1092},{"VI":1066},[],{"title":1095},{"VI":1096},"Mehdi Rahnema",{"id":1098,"sortIndex":42,"researcher":28,"roles":1099,"affiliations":1100,"properties":1109,"displayName":1111,"givenName":28,"familyName":28},"c0f85cf8-9436-45bc-9593-a3136fa384de",[956],[1101],{"id":1102,"sortIndex":32,"affiliation":1103,"properties":28},"97cc1c86-1fcf-4cb7-82ab-60d5aaa8e5cd",{"id":1102,"createTime":28,"updateTime":28,"relativeEntities":1104,"slug":28,"properties":1105,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1108,"statistic":28},[],{"title":1106},{"VI":1107},"Department of Biology, Zanjan Branch, Islamic Azad University, Zanjan, Iran",[],{"title":1110},{"VI":1111},"Rahim Amini",{"url":1054,"publisher":1113,"properties":1148},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1114,"slug":872,"properties":1115,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":1118,"manageAffiliations":1127,"indexDatabases":1133,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1116,"title":1117},{"VOID":875},{"EN":872},[1119,1123],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":1120,"label":1121,"description":1122,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":1124,"label":1125,"description":1126,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[1128],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":1129,"slug":28,"properties":1130,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1132,"statistic":28},[],{"title":1131},{"EN":897},[],[1134,1141],{"id":901,"indexDatabase":1135,"url":907,"indexYears":908,"academicFieldIds":1140,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1136,"label":1137,"description":1138,"key":781,"publicationTags":1139,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":1142,"url":926,"indexYears":28,"academicFieldIds":1147,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":1143,"label":1144,"description":1145,"key":923,"publicationTags":1146,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":1149,"volume":1151},{"VOID":1150},"245-253",{"VOID":1152},"85","2021-07-01",2021,[912,925],{"id":1157,"createTime":1158,"updateTime":1159,"relativeEntities":1160,"slug":1161,"properties":1162,"entityType":948,"verifyStatus":26,"verifyTime":1159,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1169,"fullTextUrl":28,"authors":1170,"publicationType":995,"publisherRelationship":1294,"citationCount":28,"citationInfo":28,"publishDate":1335,"publishYear":1336,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":1337,"openAccess":28,"references":28,"isForceReanalyzing":1040},"00486028-ec07-4cc0-9c24-11396d2fbd5f","2024-01-01T16:29:34.333+00:00","2025-01-15T23:38:13.042+00:00",[],"NMR-based-metabonomic-in-hippocampus-nucleus-accumbens-and-prefrontal-cortex-of-methamphetamine-sensitized-rats",{"title":1163,"references":1165,"doi":1167},{"EN":1164},"NMR-based metabonomic in hippocampus, nucleus accumbens and prefrontal cortex of methamphetamine-sensitized rats",{"VOID":1166},"Achat-Mendes, 2006, Impairment in consolidation of learned place preference following dopaminergic neurotoxicity in mice is ameliorated by N-acetylcysteine but not D1 and D2 dopamine receptor agonists, Neuropsychopharmacology, 32, 531, 10.1038\u002Fsj.npp.1301119\nAkiyama, 1998, Effect of 2,3-dihydroxy-6-nitro-7-sulfamoyl-benzo(f)quinoxaline on methamphetamine- and cocaine-induced behavioral sensitization, Pharmacol Biochem Behav, 61, 419, 10.1016\u002FS0091-3057(98)00121-X\nBrady, 2005, Selective disruption of nucleus accumbens gating mechanisms in rats behaviorally sensitized to methamphetamine, J Neurosci, 25, 6687, 10.1523\u002FJNEUROSCI.0643-05.2005\nBrown, 2003, Effects of amphetamines on mitochondrial function: role of free radicals and oxidative stress, Pharmacol Ther, 99, 45, 10.1016\u002FS0163-7258(03)00052-4\nChandra, 2006, Acute intranigral homocysteine administration produces stereotypic behavioral changes and striatal dopamine depletion in Sprague-Dawley rats, Brain Res, 1075, 81, 10.1016\u002Fj.brainres.2005.12.073\nChandramani Shivalingappa, 2012, N-Acetyl cysteine protects against methamphetamine-induced dopaminergic neurodegeneration via modulation of redox status and autophagy in dopaminergic cells, Parkinson's Dis, 2012, 424285\nChang, 2009, Altered neurometabolites and motor integration in children exposed to methamphetamine in utero, Neuroimage, 48, 391, 10.1016\u002Fj.neuroimage.2009.06.062\nChang, 2005, Additive effects of HIV and chronic methamphetamine use on brain metabolite abnormalities, Am J Psychiatry, 162, 361, 10.1176\u002Fappi.ajp.162.2.361\nErnst, 2008, Adaptation of brain glutamate plus glutamine during abstinence from chronic methamphetamine use, J Neuroimmune Pharmacol, 3, 165, 10.1007\u002Fs11481-008-9108-4\nFerrario, 2010, The role of glutamate receptor redistribution in locomotor sensitization to cocaine, Neuropsychopharmacology, 35, 818, 10.1038\u002Fnpp.2009.190\nFukami, 2004, Effect of antioxidant N-acetyl-cysteine on behavioral changes and neurotoxicity in rats after administration of methamphetamine, Brain Res, 1016, 90, 10.1016\u002Fj.brainres.2004.04.072\nGao, 2007, Metabolic changes in rat prefrontal cortex and hippocampus induced by chronic morphine treatment studied ex vivo by high resolution 1H NMR spectroscopy, Neurochem Int, 50, 386, 10.1016\u002Fj.neuint.2006.09.012\nGluck, 2008, Parallel increases in lipid and protein oxidative markers in several mouse brain regions after methamphetamine treatment, J Neurochem, 79, 152, 10.1046\u002Fj.1471-4159.2001.00549.x\nHarvey, 2000, Recovery from methamphetamine induced long-term nigrostriatal dopaminergic deficits without substantia nigra cell loss, Brain Res, 871, 259, 10.1016\u002FS0006-8993(00)02439-2\nHatzipetros, 2007, Haloperidol treatment after high-dose methamphetamine administration is excitotoxic to GABA cells in the substantia nigra pars reticulata, J Neurosci, 27, 5895, 10.1523\u002FJNEUROSCI.5260-06.2007\nHuang, 2009, Repeated cocaine administration decreases 5-HT2A receptor-mediated serotonergic enhancement of synaptic activity in rat medial prefrontal cortex, Neuropsychopharmacology, 34, 1979, 10.1038\u002Fnpp.2009.10\nIwazaki, 2008, Protein expression profile in the amygdala of rats with methamphetamine-induced behavioral sensitization, Neurosci Lett, 435, 113, 10.1016\u002Fj.neulet.2008.02.025\nKaddurah-Daouk, 2008, Metabolomics: a global biochemical approach to the study of central nervous system diseases, Neuropsychopharmacology, 34, 173, 10.1038\u002Fnpp.2008.174\nKitanaka, 2003, Behavioral sensitization and alteration in monoamine metabolism in mice after single versus repeated methamphetamine administration, Eur J Pharmacol, 474, 63, 10.1016\u002FS0014-2999(03)02015-6\nKrasnova, 2009, Methamphetamine toxicity and messengers of death, Brain Res Rev, 60, 379, 10.1016\u002Fj.brainresrev.2009.03.002\nKruman, 2000, Homocysteine elicits a DNA damage response in neurons that promotes apoptosis and hypersensitivity to excitotoxicity, J Neurosci, 20, 6920, 10.1523\u002FJNEUROSCI.20-18-06920.2000\nKuczenski, 2009, Human methamphetamine pharmacokinetics simulated in the rat: behavioral and neurochemical effects of a 72-h binge, Neuropsychopharmacology, 34, 2430, 10.1038\u002Fnpp.2009.73\nLan, 2009, Enhancing effects of morphine on methamphetamine-induced reinforcing behavior and its association with dopamine release and metabolism in mice, J Neurochem, 109, 382, 10.1111\u002Fj.1471-4159.2009.05998.x\nLan, 2008, Metabonomic analysis identifies molecular changes associated with the pathophysiology and drug treatment of bipolar disorder, Mol Psychiatry, 14, 269, 10.1038\u002Fsj.mp.4002130\nLodge, 2008, Amphetamine activation of hippocampal drive of mesolimbic dopamine neurons: a mechanism of behavioral sensitization, J Neurosci, 28, 7876, 10.1523\u002FJNEUROSCI.1582-08.2008\nLotharius, 2005, Progressive degeneration of human mesencephalic neuron-derived cells triggered by dopamine-dependent oxidative stress is dependent on the mixed-lineage kinase pathway, J Neurosci, 25, 6329, 10.1523\u002FJNEUROSCI.1746-05.2005\nManji, 2000, Neuroplasticity and cellular resilience in mood disorders, Mol Psychiatry, 5, 578, 10.1038\u002Fsj.mp.4000811\nMao, 2010, Decoding BDNF-LTP coupling in cocaine addiction, Neuron, 67, 679, 10.1016\u002Fj.neuron.2010.08.036\nMcDaid, 2006, Methamphetamine-induced sensitization differentially alters pCREB and ΔFosB throughout the limbic circuit of the mammalian brain, Mol Pharmacol, 70, 2064, 10.1124\u002Fmol.106.023051\nMizuno, 2010, The anthraquinone derivative emodin attenuates methamphetamine-induced hyperlocomotion and startle response in rats, Pharmacol Biochem Behav, 97, 392, 10.1016\u002Fj.pbb.2010.09.009\nMorris, 2003, Reflections on the application of 13C-MRS to research on brain metabolism, NMR Biomed, 16, 303, 10.1002\u002Fnbm.844\nMoszczynska, 2004, Why is parkinsonism not a feature of human methamphetamine users?, Brain, 127, 363, 10.1093\u002Fbrain\u002Fawh046\nNi, 2008, Metabolic profiling reveals disorder of amino acid metabolism in four brain regions from a rat model of chronic unpredictable mild stress, FEBS Lett, 582, 2627, 10.1016\u002Fj.febslet.2008.06.040\nNordahl, 2005, Methamphetamine users in sustained abstinence: a proton magnetic resonance spectroscopy study, Arch Gen Psychiatry, 62, 444, 10.1001\u002Farchpsyc.62.4.444\nPatkar, 2009, Alterations in tryptophan and purine metabolism in cocaine addiction: a metabolomic study, Psychopharmacology (Berlin), 206, 479, 10.1007\u002Fs00213-009-1625-1\nPears, 2005, High resolution 1H NMR-based metabolomics indicates a neurotransmitter cycling deficit in cerebral tissue from a mouse model of Batten disease, J Biol Chem, 280, 42508, 10.1074\u002Fjbc.M507380200\nPerez, 2010, Different chronic cocaine administration protocols induce changes on dentate gyrus plasticity and hippocampal dependent behavior, Synapse, 64, 742\nPham, 2009, Automated scoring of fear-related behavior using EthoVision software, J Neurosci Methods, 178, 323, 10.1016\u002Fj.jneumeth.2008.12.021\nPlumb, 2003, Metabonomic analysis of mouse urine by liquid-chromatography–time of flight mass spectrometry (LC–TOFMS): detection of strain, diurnal and gender differences, Analyst, 128, 819, 10.1039\u002Fb304296k\nSalek, 2008, A metabolomic study of brain tissues from aged mice with low expression of the vesicular monoamine transporter 2 (VMAT2) gene, Neurochem Res, 33, 292, 10.1007\u002Fs11064-007-9542-3\nSalo, 2007, Attentional control and brain metabolite levels in methamphetamine abusers, Biol Psychiatry, 61, 1272, 10.1016\u002Fj.biopsych.2006.07.031\nSarker, 2010, The high-affinity binding site for tricyclic antidepressants resides in the outer vestibule of the serotonin transporter, Mol Pharmacol, 78, 1026, 10.1124\u002Fmol.110.067538\nScholl, 2009, Individual differences in amphetamine sensitization, behavior and central monoamines, Physiol Behav, 96, 493, 10.1016\u002Fj.physbeh.2008.12.001\nSimoes, 2007, Methamphetamine induces alterations on hippocampal NMDA and AMPA receptor subunit levels and impairs spatial working memory, Neuroscience, 150, 433, 10.1016\u002Fj.neuroscience.2007.09.044\nSmith, 2007, Methamphetamine exposure antagonizes N-methyl-d-aspartate receptor-mediated neurotoxicity in organotypic hippocampal slice cultures, Brain Res, 1157, 74, 10.1016\u002Fj.brainres.2007.04.056\nStaszewski, 2006, Methamphetamine-induced spectrin proteolysis in the rat striatum, J Neurochem, 96, 1267, 10.1111\u002Fj.1471-4159.2005.03618.x\nSung, 2007, Relationship between N-acetyl-aspartate in gray and white matter of abstinent methamphetamine abusers and their history of drug abuse: a proton magnetic resonance spectroscopy study, Drug Alcohol Depend, 88, 28, 10.1016\u002Fj.drugalcdep.2006.09.011\nSzumlinski, 2000, Interactions between iboga agents and methamphetamine sensitization: studies of locomotion and stereotypy in rats, Psychopharmacology (Berlin), 151, 234, 10.1007\u002Fs002130000478\nThomas, 2007, The newly synthesized pool of dopamine determines the severity of methamphetamine-induced neurotoxicity, J Neurochem, 105, 605, 10.1111\u002Fj.1471-4159.2007.05155.x\nThomas, 2009, Increases in cytoplasmic dopamine compromise the normal resistance of the nucleus accumbens to methamphetamine neurotoxicity, J Neurochem, 109, 1745, 10.1111\u002Fj.1471-4159.2009.06094.x\nWei, 2009, Metabolic profiling studies on the toxicological effects of realgar in rats by 1H NMR spectroscopy, Toxicol Appl Pharmacol, 234, 314, 10.1016\u002Fj.taap.2008.11.010\nWikoff, 2008, Metabolomic analysis of the cerebrospinal fluid reveals changes in phospholipase expression in the CNS of SIV-infected macaques, J Clin Invest, 118, 2661, 10.1172\u002FJCI34138\nWinsberg, 2000, Decreased dorsolateral prefrontal N-acetyl aspartate in bipolar disorder, Biol Psychiatry, 47, 475, 10.1016\u002FS0006-3223(99)00183-3\nWishart, 2007, HMDB: the human metabolome database, Nucleic Acids Res, 35, D521, 10.1093\u002Fnar\u002Fgkl923\nXiang, 2006, Neurochemical changes in brain induced by chronic morphine treatment: NMR studies in thalamus and somatosensory cortex of rats, Neurochem Res, 31, 1255, 10.1007\u002Fs11064-006-9158-z\nYamamoto, 2005, Amphetamine neurotoxicity: cause and consequence of oxidative stress, Crit Rev Neurobiol, 17, 87, 10.1615\u002FCritRevNeurobiol.v17.i2.30\nYao, 2005, Metabolic investigation in psychiatric disorders, Mol Neurobiol, 31, 193, 10.1385\u002FMN:31:1-3:193\nZhang, 2009, Metabonomic alterations in hippocampus, temporal and prefrontal cortex with age in rats, Neurochem Int, 54, 481, 10.1016\u002Fj.neuint.2009.02.004\nZhou, 2011, Protective role of taurine against morphine-induced neurotoxicity in C6 cells via inhibition of oxidative stress, Neurotox Res, 20, 334, 10.1007\u002Fs12640-011-9247-x\nZou, 2005, TNFα potentiates glutamate neurotoxicity by inhibiting glutamate uptake in organotypic brain slice cultures: neuroprotection by NF-κB inhibition, Brain Res, 1034, 11, 10.1016\u002Fj.brainres.2004.11.014",{"VOID":1168},"10.1016\u002Fj.neuro.2013.02.007","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X13000272",[1171,1186,1199,1212,1227,1242,1255,1268,1281],{"id":1172,"sortIndex":32,"researcher":28,"roles":1173,"affiliations":1174,"properties":1183,"displayName":1185,"givenName":28,"familyName":28},"bc803585-0cb8-45ae-b389-b9f684c50b17",[956],[1175],{"id":1176,"sortIndex":32,"affiliation":1177,"properties":28},"21d60438-765f-44b2-a673-ef6ff4c88712",{"id":1176,"createTime":28,"updateTime":28,"relativeEntities":1178,"slug":28,"properties":1179,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1182,"statistic":28},[],{"title":1180},{"VI":1181},"National Chengdu Center for Safety Evaluation of Drugs, State Key Lab of Biotherapy, West China Hospital, Sichuan University, Chengdu 610041, China",[],{"title":1184},{"VI":1185},"Qian Bu",{"id":1187,"sortIndex":40,"researcher":28,"roles":1188,"affiliations":1189,"properties":1196,"displayName":1198,"givenName":28,"familyName":28},"d453d486-841c-4358-9268-b4220ac78ac9",[956],[1190],{"id":1176,"sortIndex":32,"affiliation":1191,"properties":28},{"id":1176,"createTime":28,"updateTime":28,"relativeEntities":1192,"slug":28,"properties":1193,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1195,"statistic":28},[],{"title":1194},{"VI":1181},[],{"title":1197},{"VI":1198},"Lei Lv",{"id":1200,"sortIndex":123,"researcher":28,"roles":1201,"affiliations":1202,"properties":1209,"displayName":1211,"givenName":28,"familyName":28},"becc8780-47f1-4a34-ad0d-40f7c28c8a6b",[956],[1203],{"id":1176,"sortIndex":32,"affiliation":1204,"properties":28},{"id":1176,"createTime":28,"updateTime":28,"relativeEntities":1205,"slug":28,"properties":1206,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1208,"statistic":28},[],{"title":1207},{"VI":1181},[],{"title":1210},{"VI":1211},"Guangyan Yan",{"id":1213,"sortIndex":42,"researcher":28,"roles":1214,"affiliations":1215,"properties":1224,"displayName":1226,"givenName":28,"familyName":28},"caa2a896-d08b-4e03-b3df-2de28ecdc5ff",[956],[1216],{"id":1217,"sortIndex":32,"affiliation":1218,"properties":28},"35dbf8ab-3a61-412a-8f19-c09c559ed4a6",{"id":1217,"createTime":28,"updateTime":28,"relativeEntities":1219,"slug":28,"properties":1220,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1223,"statistic":28},[],{"title":1221},{"VI":1222},"Analytical &Testing Center, Sichuan University, Chengdu 610041, China",[],{"title":1225},{"VI":1226},"Pengchi Deng",{"id":1228,"sortIndex":45,"researcher":28,"roles":1229,"affiliations":1230,"properties":1239,"displayName":1241,"givenName":28,"familyName":28},"df919eac-f6de-4fb9-ab4c-f91c12392984",[956],[1231],{"id":1232,"sortIndex":32,"affiliation":1233,"properties":28},"54f49109-11a0-454c-a7e1-4a2ae4b1c8c1",{"id":1232,"createTime":28,"updateTime":28,"relativeEntities":1234,"slug":28,"properties":1235,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1238,"statistic":28},[],{"title":1236},{"VI":1237},"Sichuan Women and Children's Hospital, Chengdu 610031, China",[],{"title":1240},{"VI":1241},"Yanli Wang",{"id":1243,"sortIndex":46,"researcher":28,"roles":1244,"affiliations":1245,"properties":1252,"displayName":1254,"givenName":28,"familyName":28},"51c6f3e9-0ed5-4bff-8a67-7e80a53262ac",[956],[1246],{"id":1176,"sortIndex":32,"affiliation":1247,"properties":28},{"id":1176,"createTime":28,"updateTime":28,"relativeEntities":1248,"slug":28,"properties":1249,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1251,"statistic":28},[],{"title":1250},{"VI":1181},[],{"title":1253},{"VI":1254},"Jiaqing Zhou",{"id":1256,"sortIndex":48,"researcher":28,"roles":1257,"affiliations":1258,"properties":1265,"displayName":1267,"givenName":28,"familyName":28},"f1b05c39-c4f8-41a3-96e8-ab624caae3de",[956],[1259],{"id":1176,"sortIndex":32,"affiliation":1260,"properties":28},{"id":1176,"createTime":28,"updateTime":28,"relativeEntities":1261,"slug":28,"properties":1262,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1264,"statistic":28},[],{"title":1263},{"VI":1181},[],{"title":1266},{"VI":1267},"Yanzhu Yang",{"id":1269,"sortIndex":49,"researcher":28,"roles":1270,"affiliations":1271,"properties":1278,"displayName":1280,"givenName":28,"familyName":28},"ed14b139-f420-49de-b0df-1235653d8120",[956],[1272],{"id":1176,"sortIndex":32,"affiliation":1273,"properties":28},{"id":1176,"createTime":28,"updateTime":28,"relativeEntities":1274,"slug":28,"properties":1275,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1277,"statistic":28},[],{"title":1276},{"VI":1181},[],{"title":1279},{"VI":1280},"Yan Li",{"id":1282,"sortIndex":357,"researcher":28,"roles":1283,"affiliations":1284,"properties":1291,"displayName":1293,"givenName":28,"familyName":28},"43bae469-7e81-46aa-ac1a-b2427f0f07fb",[956],[1285],{"id":1176,"sortIndex":32,"affiliation":1286,"properties":28},{"id":1176,"createTime":28,"updateTime":28,"relativeEntities":1287,"slug":28,"properties":1288,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1290,"statistic":28},[],{"title":1289},{"VI":1181},[],{"title":1292},{"VI":1293},"Xiaobo Cen",{"url":1169,"publisher":1295,"properties":1330},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1296,"slug":872,"properties":1297,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":1300,"manageAffiliations":1309,"indexDatabases":1315,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1298,"title":1299},{"VOID":875},{"EN":872},[1301,1305],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":1302,"label":1303,"description":1304,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":1306,"label":1307,"description":1308,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[1310],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":1311,"slug":28,"properties":1312,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1314,"statistic":28},[],{"title":1313},{"EN":897},[],[1316,1323],{"id":901,"indexDatabase":1317,"url":907,"indexYears":908,"academicFieldIds":1322,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1318,"label":1319,"description":1320,"key":781,"publicationTags":1321,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":1324,"url":926,"indexYears":28,"academicFieldIds":1329,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":1325,"label":1326,"description":1327,"key":923,"publicationTags":1328,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":1331,"volume":1333},{"VOID":1332},"17-23",{"VOID":1334},"36","2013-05-01",2013,[912,925],{"id":1339,"createTime":1340,"updateTime":1341,"relativeEntities":1342,"slug":1343,"properties":1344,"entityType":948,"verifyStatus":26,"verifyTime":1341,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1351,"fullTextUrl":28,"authors":1352,"publicationType":995,"publisherRelationship":1567,"citationCount":28,"citationInfo":28,"publishDate":1608,"publishYear":1038,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":1609,"openAccess":28,"references":28,"isForceReanalyzing":1040},"0107f561-cf0c-483b-a192-d3da1fef3949","2024-02-13T22:51:07.661+00:00","2025-01-25T00:38:47.462+00:00",[],"Ferroptosis-contributes-to-methylmercury-induced-cytotoxicity-in-rat-primary-astrocytes-and-Buffalo-rat-liver-cells",{"title":1345,"references":1347,"doi":1349},{"EN":1346},"Ferroptosis contributes to methylmercury-induced cytotoxicity in rat primary astrocytes and Buffalo rat liver cells",{"VOID":1348},"Ali, 1992, Reactive oxygen species formation as a biomarker of methylmercury and trimethyltin neurotoxicity, Neurotoxicology., 13, 637\nAllen, 2001, Methylmercury inhibits the in vitro uptake of the glutathione precursor, cystine, in astrocytes, but not in neurons, Brain Res., 894, 131, 10.1016\u002FS0006-8993(01)01988-6\nAntunes Dos Santos, 2018, Oxidative stress in methylmercury-induced cell toxicity, Toxics., 6, 47, 10.3390\u002Ftoxics6030047\nAschner, 2012, Considerations on methylmercury (MeHg) treatments in in vitro studies, Neurotoxicology., 33, 512, 10.1016\u002Fj.neuro.2012.05.002\nCeccatelli, 2010, Methylmercury-induced neurotoxicity and apoptosis, Chem. Biol. Interact., 188, 301, 10.1016\u002Fj.cbi.2010.04.007\nChang, 2013, Methylmercury induces caspase-dependent apoptosis and autophagy in human neural stem cells, Toxicol. Sci., 38, 823, 10.2131\u002Fjts.38.823\nChang, 2019, Acute methylmercury exposure and the hypoxia-inducible factor-1α signaling pathway under normoxic conditions in the rat brain and astrocytes in vitro, Environ. Health Perspect., 127, 10.1289\u002FEHP5139\nChen, 2019, Inhibition of neuronal ferroptosis in the acute phase of intracerebral hemorrhage shows long-term cerebroprotective effects, Brain Res. Bull., 153, 122, 10.1016\u002Fj.brainresbull.2019.08.013\nChen, 2020, Iron metabolism in ferroptosis, Front. Cell Dev. Biol., 8, 10.3389\u002Ffcell.2020.590226\nDixon, 2012, Ferroptosis: an iron-dependent form of nonapoptotic cell death, Cell., 149, 1060, 10.1016\u002Fj.cell.2012.03.042\nDomene, 2020, Mechanism of molecular oxygen diffusion in a hypoxia-sensing prolyl hydroxylase using multiscale simulation, Am. Chem. Soc., 142, 2253, 10.1021\u002Fjacs.9b09236\nDong, 2019, Polybrominated diphenyl ethers quinone induces NCOA4-mediated ferritinophagy through selectively autophagic degradation of ferritin, Chem. Res. Toxicol., 32, 2509, 10.1021\u002Facs.chemrestox.9b00350\nDong, 2019, The distribution and accumulation of mercury and methylmercury in surface sediments beneath the East China Sea, Environ. Sci. Pollut. Res. Int., 26, 4667, 10.1007\u002Fs11356-018-3880-3\nFanzani, 2017, Iron, oxidative damage and ferroptosis in rhabdomyosarcoma, Int. J. Mol. Sci., 18\nFarina, 2019, Glutathione antioxidant system and methylmercury-induced neurotoxicity: an intriguing interplay, Biochim. Biophys. Acta Gen. Subj., 1863, 10.1016\u002Fj.bbagen.2019.01.007\nFarina, 2009, Probucol increases glutathione peroxidase-1 activity and displays long-lasting protection against methylmercury toxicity in cerebellar granule cells, Toxicol. Sci., 112, 416, 10.1093\u002Ftoxsci\u002Fkfp219\nForcina, 2019, GPx4 at the crossroads of lipid homeostasis and ferroptosis, Proteomics., 19, 10.1002\u002Fpmic.201800311\nFranco, 2009, Methylmercury neurotoxicity is associated with inhibition of the antioxidant enzyme glutathione peroxidase, Free Radic. Biol. Med., 47, 449, 10.1016\u002Fj.freeradbiomed.2009.05.013\nFriedmann Angeli, 2014, Inactivation of the ferroptosis regulator Gpx4 triggers acute renal failure in mice, Nat. Cell Biol., 16, 1180, 10.1038\u002Fncb3064\nGalluzzi, 2018, Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018, Cell Death Differ., 25, 486, 10.1038\u002Fs41418-017-0012-4\nGworek, 2016, Mercury in marine and oceanic waters-a review, Water Air Soil Pollut., 227, 371, 10.1007\u002Fs11270-016-3060-3\nHao, 2022, Cadmium induces ferroptosis and apoptosis by modulating miR-34a-5p\u002FSirt1axis in PC12 cells, Environ. Toxicol., 37, 41, 10.1002\u002Ftox.23376\nHsu-Kim, 2013, Mechanisms regulating mercury bioavailability for methylating microorganisms in the aquatic environment: a critical review, Environ. Sci. Technol., 47, 2441, 10.1021\u002Fes304370g\nHylander, 2003, 500 years of mercury production: global annual inventory by region until 2000 and associated emissions, Sci. Total Environ., 304, 13, 10.1016\u002FS0048-9697(02)00553-3\nJoshi, 2014, Reversal of methylmercury-induced oxidative stress, lipid peroxidation, and DNA damage by the treatment of N-acetyl cysteine: a protective approach, J. Environ. Pathol. Toxicol. Oncol., 33, 167, 10.1615\u002FJEnvironPatholToxicolOncol.2014010291\nKremer, 2021, GOT1 inhibition promotes pancreatic cancer cell death by ferroptosis, Nat. Commun., 12, 4860, 10.1038\u002Fs41467-021-24859-2\nLei, 2019, Mechanisms of ferroptosis and relations with regulated cell death: a review, Front. Physiol., 10, 139, 10.3389\u002Ffphys.2019.00139\nLewerenz, 2012, Regulation of xCT expression and system XC- function in neuronal cells, Amino Acids, 42, 171, 10.1007\u002Fs00726-011-0862-x\nLi, 2020, Ferroptosis: past, present and future, Cell Death Dis., 11, 88, 10.1038\u002Fs41419-020-2298-2\nLiu, 2020, Ferrostatin-1 alleviates lipopolysaccharide-induced acute lung injury via inhibiting ferroptosis, Cell Mol. Biol. Lett., 25, 10, 10.1186\u002Fs11658-020-00205-0\nLiu, 2020, Differential susceptibility of PC12 and BRL cells and the regulatory role of HIF-1α signaling pathway in response to acute methylmercury exposure under normoxia, Toxicol. Lett., 331, 82, 10.1016\u002Fj.toxlet.2020.05.023\nLiu, 2020, Fostered Nrf2 expression antagonizes iron overload and glutathione depletion to promote resistance of neuron-like cells to ferroptosis, Toxicol. Appl. Pharmacol., 407, 10.1016\u002Fj.taap.2020.115241\nLiu, 2021, Sodium iodate induces ferroptosis in human retinal pigment epithelium ARPE-19 cells, Cell Death Dis., 12, 230, 10.1038\u002Fs41419-021-03520-2\nLiu, 2019, Rice life cycle-based global mercury biotransport and human methylmercury exposure, Nat. Commun., 10, 5164, 10.1038\u002Fs41467-019-13221-2\nLiu, 2021, Rivers as the largest source of mercury to coastal oceans worldwide, Nat. Geosci., 14, 672, 10.1038\u002Fs41561-021-00793-2\nLuan, 2021, Cadmium exposure promotes activation of cerebrum and cerebellum ferroptosis and necrosis in swine, Ecotoxicol. Environ. Saf., 224, 10.1016\u002Fj.ecoenv.2021.112650\nMacedo-Júnior, 2017, Methylmercury exposure for 14 days (short-term) produces behavioral and biochemical changes in mouse cerebellum, liver, and serum, J. Toxicol. Environ. Health A., 80, 1145, 10.1080\u002F15287394.2017.1357324\nMarrugo-Negrete, 2020, Human health risk of methylmercury from fish consumption at the largest floodplain in Colombia, Environ. Res., 182, 10.1016\u002Fj.envres.2019.109050\nNaime, 2021, Prevention of ferroptosis in acute scenarios: an in vitro study with classic and novel anti-ferroptotic compounds, Free Radic. Res., 1\nPalmer, 2019, Zinc intoxication induces ferroptosis in A549 human lung cells, Metallomics., 11, 982, 10.1039\u002Fc8mt00360b\nPierozan, 2017, Neurotoxicity of methylmercury in isolated astrocytes and neurons: the cytoskeleton as a main target, Mol. Neurobiol., 54, 5752, 10.1007\u002Fs12035-016-0101-2\nRamasamy, 2017, Total and methyl mercury in the water, sediment, and fishes of Vembanad, a tropical backwater system in India, Environ. Monit. Assess., 189, 130, 10.1007\u002Fs10661-017-5845-2\nReichert, 2020, Ferroptosis mechanisms involved in neurodegenerative diseases, Int. J. Mol. Sci., 21\nRosa-Silva, 2020, Hepatic and neurobiological effects of foetal and breastfeeding and adulthood exposure to methylmercury in Wistar rats, Chemosphere., 244, 10.1016\u002Fj.chemosphere.2019.125400\nSchartup, 2019, Climate change and overfishing increase neurotoxicant in marine predators, Nature., 572, 648, 10.1038\u002Fs41586-019-1468-9\nSiegert, 2015, Ferritin-mediated iron sequestration stabilizes hypoxia-inducible factor-1α upon LPS activation in the presence of ample oxygen, Cell Rep., 13, 2048, 10.1016\u002Fj.celrep.2015.11.005\nStockwell, 2017, Ferroptosis: a regulated cell death nexus linking metabolism, redox biology, and disease, Cell., 171, 273, 10.1016\u002Fj.cell.2017.09.021\nTang, 2019, Dual GSH-exhausting sorafenib loaded manganese-silica nanodrugs for inducing the ferroptosis of hepatocellular carcinoma cells, Int. J. Pharm., 572, 10.1016\u002Fj.ijpharm.2019.118782\nTang, 2018, Ferroptosis is newly characterized form of neuronal cell death in response to arsenite exposure, Neurotoxicology., 67, 27, 10.1016\u002Fj.neuro.2018.04.012\nWang, 2021, Ulinastatin protects against acetaminophen-induced liver injury by alleviating ferroptosis via the SIRT1\u002FNRF2\u002FHO-1 pathway, Am. J. Transl. Res., 13, 6031\nWei, 2020, Arsenic induces pancreatic dysfunction and ferroptosis via mitochondrial ROS-autophagy-lysosomal pathway, Hazard. Mater., 384, 10.1016\u002Fj.jhazmat.2019.121390\nXiao, 2021, Arsenite induces ferroptosis in the neuronal cells via activation of ferritinophagy, Food Chem. Toxicol., 151, 10.1016\u002Fj.fct.2021.112114\nXu, 2019, Molecular mechanisms of ferroptosis and its role in cancer therapy, Cell Mol. Med., 23, 4900, 10.1111\u002Fjcmm.14511\nYamada, 2020, Ferroptosis driven by radical oxidation of n-6 polyunsaturated fatty acids mediates acetaminophen-induced acute liver failure, Cell Death Dis., 11, 144, 10.1038\u002Fs41419-020-2334-2\nYan, 2020, The pathological role of ferroptosis in ischemia\u002Freperfusion-related injury, Zool. Res., 41, 220, 10.24272\u002Fj.issn.2095-8137.2020.042\nYan, 2019, Iron metabolism, ferroptosis, and the links with Alzheimer’s disease, Front. Neurosci., 13, 1443, 10.3389\u002Ffnins.2019.01443\nYang, 2018, Activation of autophagic flux and the Nrf2\u002FARE signaling pathway by hydrogen sulfide protects against acrylonitrile-induced neurotoxicity in primary rat astrocytes, Arch. Toxicol., 92, 2093, 10.1007\u002Fs00204-018-2208-x\nYang, 2014, Regulation of ferroptotic cancer cell death by GPx4, Cell., 156, 317, 10.1016\u002Fj.cell.2013.12.010\nYi, 2020, Dihydroartemisinin initiates ferroptosis in glioblastoma through GPx4 inhibition, Biosci. Rep., 40\nYonaha, 1983, Stimulation of lipid peroxidation by methyl mercury in rats, Life Sci., 32, 1507, 10.1016\u002F0024-3205(83)90917-7\nYu, 2016, Preconditioning of endoplasmic reticulum stress protects against acrylonitrile-induced cytotoxicity in primary rat astrocytes: the role of autophagy, Neurotoxicology., 55, 112, 10.1016\u002Fj.neuro.2016.05.020\nYuntao, 2016, Role of autophagy in methylmercury-induced neurotoxicity in rat primary astrocytes, Arch. Toxicol., 90, 333, 10.1007\u002Fs00204-014-1425-1\nZemolin, 2012, Evidences for a role of glutathione peroxidase 4 (GPx4) in methylmercury induced neurotoxicity in vivo, Toxicology., 302, 60, 10.1016\u002Fj.tox.2012.07.013\nZeng, 2021, Cadmium attenuates testosterone synthesis by promoting ferroptosis and blocking autophagosome-lysosome fusion, Free Radic. Biol. Med., 176, 176, 10.1016\u002Fj.freeradbiomed.2021.09.028\nZhang, 2007, Environmental mercury contamination in China: sources and impacts, Environ. Int., 33, 108, 10.1016\u002Fj.envint.2006.06.022\nZhao, 2021, Endoplasmic reticulum stress-mediated autophagy activation is involved in cadmium-induced ferroptosis of renal tubular epithelial cells, Free Radic. Biol. Med., 175, 236, 10.1016\u002Fj.freeradbiomed.2021.09.008\nZheng, 2021, Sorafenib fails to trigger ferroptosis across a wide range of cancer cell lines, Cell Death Dis., 12, 698, 10.1038\u002Fs41419-021-03998-w",{"VOID":1350},"10.1016\u002Fj.neuro.2022.04.006","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X22000547",[1353,1368,1381,1394,1407,1420,1433,1448,1463,1478,1502,1517,1532,1547],{"id":1354,"sortIndex":32,"researcher":28,"roles":1355,"affiliations":1356,"properties":1365,"displayName":1367,"givenName":28,"familyName":28},"f75d0552-ace0-4af9-b415-c5f4d9b37df0",[956],[1357],{"id":1358,"sortIndex":32,"affiliation":1359,"properties":28},"53e03c9b-50a8-4772-b0ab-858dd6796b40",{"id":1358,"createTime":28,"updateTime":28,"relativeEntities":1360,"slug":28,"properties":1361,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1364,"statistic":28},[],{"title":1362},{"VI":1363},"Department of Preventive Medicine and Public Health Laboratory Sciences, School of Medicine, Jiangsu University, Zhenjiang, Jiangsu 212013, China",[],{"title":1366},{"VI":1367},"Lihua Dong",{"id":1369,"sortIndex":40,"researcher":28,"roles":1370,"affiliations":1371,"properties":1378,"displayName":1380,"givenName":28,"familyName":28},"9a99c2db-ec46-43ff-a7a5-b8b0c880d2fb",[956],[1372],{"id":1358,"sortIndex":32,"affiliation":1373,"properties":28},{"id":1358,"createTime":28,"updateTime":28,"relativeEntities":1374,"slug":28,"properties":1375,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1377,"statistic":28},[],{"title":1376},{"VI":1363},[],{"title":1379},{"VI":1380},"Bobo Yang",{"id":1382,"sortIndex":123,"researcher":28,"roles":1383,"affiliations":1384,"properties":1391,"displayName":1393,"givenName":28,"familyName":28},"3d8e6755-41b5-41ba-9a1f-45443f4c22c3",[956],[1385],{"id":1358,"sortIndex":32,"affiliation":1386,"properties":28},{"id":1358,"createTime":28,"updateTime":28,"relativeEntities":1387,"slug":28,"properties":1388,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1390,"statistic":28},[],{"title":1389},{"VI":1363},[],{"title":1392},{"VI":1393},"Yu Zhang",{"id":1395,"sortIndex":42,"researcher":28,"roles":1396,"affiliations":1397,"properties":1404,"displayName":1406,"givenName":28,"familyName":28},"d6353ee4-fa99-4651-8128-54245b57e8a8",[956],[1398],{"id":1358,"sortIndex":32,"affiliation":1399,"properties":28},{"id":1358,"createTime":28,"updateTime":28,"relativeEntities":1400,"slug":28,"properties":1401,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1403,"statistic":28},[],{"title":1402},{"VI":1363},[],{"title":1405},{"VI":1406},"Suhua Wang",{"id":1408,"sortIndex":45,"researcher":28,"roles":1409,"affiliations":1410,"properties":1417,"displayName":1419,"givenName":28,"familyName":28},"2ef0a87f-7bae-425b-b4b9-5880bb91d788",[956],[1411],{"id":1358,"sortIndex":32,"affiliation":1412,"properties":28},{"id":1358,"createTime":28,"updateTime":28,"relativeEntities":1413,"slug":28,"properties":1414,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1416,"statistic":28},[],{"title":1415},{"VI":1363},[],{"title":1418},{"VI":1419},"Fang Li",{"id":1421,"sortIndex":46,"researcher":28,"roles":1422,"affiliations":1423,"properties":1430,"displayName":1432,"givenName":28,"familyName":28},"bfa662b0-124d-4cfb-945c-b619a8a2131c",[956],[1424],{"id":1358,"sortIndex":32,"affiliation":1425,"properties":28},{"id":1358,"createTime":28,"updateTime":28,"relativeEntities":1426,"slug":28,"properties":1427,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1429,"statistic":28},[],{"title":1428},{"VI":1363},[],{"title":1431},{"VI":1432},"Guangwei Xing",{"id":1434,"sortIndex":48,"researcher":28,"roles":1435,"affiliations":1436,"properties":1445,"displayName":1447,"givenName":28,"familyName":28},"69b1d269-415d-4ea6-b5a0-e7f2a22747d9",[956],[1437],{"id":1438,"sortIndex":32,"affiliation":1439,"properties":28},"8a741c45-ba15-49c5-972e-f83d5e8e2c59",{"id":1438,"createTime":28,"updateTime":28,"relativeEntities":1440,"slug":28,"properties":1441,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1444,"statistic":28},[],{"title":1442},{"VI":1443},"Department of Biochemistry, Federal University of Santa Catarina, Florianopolis, Santa Catarina, Brazil",[],{"title":1446},{"VI":1447},"Marcelo Farina",{"id":1449,"sortIndex":49,"researcher":28,"roles":1450,"affiliations":1451,"properties":1460,"displayName":1462,"givenName":28,"familyName":28},"c3c7ba34-aa36-44f6-aaa1-418680bad56f",[956],[1452],{"id":1453,"sortIndex":32,"affiliation":1454,"properties":28},"22f6d1b0-cdb2-4668-a479-fd601f8fdb35",{"id":1453,"createTime":28,"updateTime":28,"relativeEntities":1455,"slug":28,"properties":1456,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1459,"statistic":28},[],{"title":1457},{"VI":1458},"Department of Occupational Health and Toxicology, School of Public Health, Fudan University, Shanghai 200032, China",[],{"title":1461},{"VI":1462},"Yubin Zhang",{"id":1464,"sortIndex":357,"researcher":28,"roles":1465,"affiliations":1466,"properties":1475,"displayName":1477,"givenName":28,"familyName":28},"d2a0989d-2141-4d65-92cf-dc55d9ca1a53",[956],[1467],{"id":1468,"sortIndex":32,"affiliation":1469,"properties":28},"bb0609df-3433-47c2-9ea5-2d28d078e897",{"id":1468,"createTime":28,"updateTime":28,"relativeEntities":1470,"slug":28,"properties":1471,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1474,"statistic":28},[],{"title":1472},{"VI":1473},"Department of Applied Biology, C. K. Tedam University of Technology and Applied Sciences, Navrongo, UK-0215-5321, Ghana",[],{"title":1476},{"VI":1477},"Kwaku Appiah-Kubi",{"id":1479,"sortIndex":145,"researcher":28,"roles":1480,"affiliations":1481,"properties":1499,"displayName":1501,"givenName":28,"familyName":28},"706b5b84-2727-4cf5-b9d3-1ff9127d7e91",[956],[1482,1490],{"id":1483,"sortIndex":32,"affiliation":1484,"properties":28},"8ad5f0be-c3a5-4204-a04c-37f66af4783b",{"id":1483,"createTime":28,"updateTime":28,"relativeEntities":1485,"slug":28,"properties":1486,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1489,"statistic":28},[],{"title":1487},{"VI":1488},"Laboratory of Molecular Dietetics, IM Sechenov First Moscow State Medical University (Sechenov University), Bolshaya Pirogovskaya St., 2-4, Moscow 119146, Russia",[],{"id":1491,"sortIndex":40,"affiliation":1492,"properties":1498},"3f7ce265-b4d8-4de3-9220-02c1c4a96d4d",{"id":1491,"createTime":28,"updateTime":28,"relativeEntities":1493,"slug":28,"properties":1494,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1497,"statistic":28},[],{"title":1495},{"VI":1496},"Laboratory of Ecobiomonitoring and Quality Control, Yaroslavl State University, Sovetskaya Str. 14, Yaroslavl 150000, Russia",[],{},{"title":1500},{"VI":1501},"Alexey A. Tinkov",{"id":1503,"sortIndex":205,"researcher":28,"roles":1504,"affiliations":1505,"properties":1514,"displayName":1516,"givenName":28,"familyName":28},"4e776f75-1222-483d-bfb9-6c42f38a14de",[956],[1506],{"id":1507,"sortIndex":32,"affiliation":1508,"properties":28},"b088bb51-ebe7-424d-9143-34a544f2f6e4",{"id":1507,"createTime":28,"updateTime":28,"relativeEntities":1509,"slug":28,"properties":1510,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1513,"statistic":28},[],{"title":1511},{"VI":1512},"Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, NY 10461, USA",[],{"title":1515},{"VI":1516},"Michael Aschner",{"id":1518,"sortIndex":47,"researcher":28,"roles":1519,"affiliations":1520,"properties":1529,"displayName":1531,"givenName":28,"familyName":28},"7184ca91-1495-4391-9655-ee7578bb745e",[956],[1521],{"id":1522,"sortIndex":32,"affiliation":1523,"properties":28},"e30880f7-be39-47e2-9f3a-82d39e2c73ce",{"id":1522,"createTime":28,"updateTime":28,"relativeEntities":1524,"slug":28,"properties":1525,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1528,"statistic":28},[],{"title":1526},{"VI":1527},"School of Life Science, Jiangsu University, Zhenjiang, Jiangsu 212013, China",[],{"title":1530},{"VI":1531},"Haifeng Shi",{"id":1533,"sortIndex":126,"researcher":28,"roles":1534,"affiliations":1535,"properties":1544,"displayName":1546,"givenName":28,"familyName":28},"2ac79f88-48cc-4d21-a3ba-60ef04003b94",[956],[1536],{"id":1537,"sortIndex":32,"affiliation":1538,"properties":28},"b44480bd-939b-4181-8f23-798ff3a2a247",{"id":1537,"createTime":28,"updateTime":28,"relativeEntities":1539,"slug":28,"properties":1540,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1543,"statistic":28},[],{"title":1541},{"VI":1542},"Center for Experimental Research, Kunshan Hospital Affiliated to Jiangsu University, Kunshan, Jiangsu 215300, China",[],{"title":1545},{"VI":1546},"Tingting Liu",{"id":1548,"sortIndex":146,"researcher":28,"roles":1549,"affiliations":1550,"properties":1564,"displayName":1566,"givenName":28,"familyName":28},"f2823a04-04ee-4526-a966-e3172c39bd88",[956],[1551,1557],{"id":1358,"sortIndex":32,"affiliation":1552,"properties":28},{"id":1358,"createTime":28,"updateTime":28,"relativeEntities":1553,"slug":28,"properties":1554,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1556,"statistic":28},[],{"title":1555},{"VI":1363},[],{"id":1537,"sortIndex":40,"affiliation":1558,"properties":1563},{"id":1537,"createTime":28,"updateTime":28,"relativeEntities":1559,"slug":28,"properties":1560,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1562,"statistic":28},[],{"title":1561},{"VI":1542},[],{},{"title":1565},{"VI":1566},"Rongzhu Lu",{"url":1351,"publisher":1568,"properties":1603},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1569,"slug":872,"properties":1570,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":1573,"manageAffiliations":1582,"indexDatabases":1588,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1571,"title":1572},{"VOID":875},{"EN":872},[1574,1578],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":1575,"label":1576,"description":1577,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":1579,"label":1580,"description":1581,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[1583],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":1584,"slug":28,"properties":1585,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1587,"statistic":28},[],{"title":1586},{"EN":897},[],[1589,1596],{"id":901,"indexDatabase":1590,"url":907,"indexYears":908,"academicFieldIds":1595,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1591,"label":1592,"description":1593,"key":781,"publicationTags":1594,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":1597,"url":926,"indexYears":28,"academicFieldIds":1602,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":1598,"label":1599,"description":1600,"key":923,"publicationTags":1601,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":1604,"volume":1606},{"VOID":1605},"228-236",{"VOID":1607},"90","2022-05-01",[912,925],{"id":1611,"createTime":1612,"updateTime":1613,"relativeEntities":1614,"slug":1615,"properties":1616,"entityType":948,"verifyStatus":26,"verifyTime":1613,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1623,"fullTextUrl":28,"authors":1624,"publicationType":995,"publisherRelationship":1749,"citationCount":28,"citationInfo":28,"publishDate":1790,"publishYear":1791,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":1792,"openAccess":28,"references":28,"isForceReanalyzing":1040},"0170c426-a5be-437c-9916-379c921ce9ed","2023-12-13T00:38:20.259+00:00","2025-01-10T21:57:17.014+00:00",[],"Structure-cytotoxicity-relationship-profile-of-13-synthetic-cathinones-in-differentiated-human-SH-SY5Y-neuronal-cells",{"title":1617,"references":1619,"doi":1621},{"EN":1618},"Structure-cytotoxicity relationship profile of 13 synthetic cathinones in differentiated human SH-SY5Y neuronal cells",{"VOID":1620},"Adam, 2014, Apoptotic effects of the’ designer drug’ methylenedioxypyrovalerone (MDPV) on the neonatal mouse brain, Neurotoxicology, 44, 231, 10.1016\u002Fj.neuro.2014.07.004\nAlbertson, 2014, Recreational drugs of abuse, Clin. Rev. Allergy Immunol., 46, 1, 10.1007\u002Fs12016-013-8382-y\nAlotaibi, 2015, (1)H, (1)(3)C, (1)(5)N HMBC, and (1)(9)F NMR spectroscopic characterisation of seized flephedrone, cut with benzocaine, J. Pharm. Biomed. Anal., 107, 535, 10.1016\u002Fj.jpba.2014.12.033\nAngoa-Perez, 2017, Neurotoxicology of synthetic cathinone analogs, Curr. Top. Behav. Neurosci., 32, 209, 10.1007\u002F7854_2016_21\nAraujo, 2015, Raising awareness of new psychoactive substances: chemical analysis and in vitro toxicity screening of’ legal high’ packages containing synthetic cathinones, Arch. Toxicol., 89, 757, 10.1007\u002Fs00204-014-1278-7\nArcher, 2009, Fluoromethcathinone, a new substance of abuse, Forensic Sci. Int., 185, 10, 10.1016\u002Fj.forsciint.2008.11.013\nBarbosa, 2014, The mixture of \"ecstasy\" and its metabolites is toxic to human SH-SY5Y differentiated cells at in vivo relevant concentrations, Arch. Toxicol., 88, 455, 10.1007\u002Fs00204-013-1120-7\nBaumann, 2012, The designer methcathinone analogs, mephedrone and methylone, are substrates for monoamine transporters in brain tissue, Neuropsychopharmacology, 37, 1192, 10.1038\u002Fnpp.2011.304\nBorenfreund, 1985, A simple quantitative procedure using monolayer culture for toxicity assays, J. Tissue Cult. Methods, 9, 7, 10.1007\u002FBF01666038\nBoulanger-Gobeil, 2012, Seizures and hyponatremia related to ethcathinone and methylone poisoning, J. Med. Toxicol., 8, 59, 10.1007\u002Fs13181-011-0159-1\nCapela, 2007, Ecstasy induces apoptosis via 5-HT(2A)-receptor stimulation in cortical neurons, Neurotoxicology, 28, 868, 10.1016\u002Fj.neuro.2007.04.005\nCapela, 2007, Neurotoxicity mechanisms of thioether ecstasy metabolites, Neuroscience, 146, 1743, 10.1016\u002Fj.neuroscience.2007.03.028\nCapela, 2006, Neurotoxicity of Ecstasy metabolites in rat cortical neurons, and influence of hyperthermia, J. Pharmacol. Exp. Ther., 316, 53, 10.1124\u002Fjpet.105.092577\nChan, 2012, A novel image-based cytometry method for autophagy detection in living cells, Autophagy, 8, 1371, 10.4161\u002Fauto.21028\nChandramani Shivalingappa, 2012, N-acetyl cysteine protects against methamphetamine-induced dopaminergic neurodegeneration via modulation of redox status and autophagy in dopaminergic cells, Parkinsons Dis., 2012, 424285\nCosta, 2009, Adrenaline and reactive oxygen species elicit proteome and energetic metabolism modifications in freshly isolated rat cardiomyocytes, Toxicology, 260, 84, 10.1016\u002Fj.tox.2009.03.012\nden Hollander, 2015, Mitochondrial respiratory dysfunction due to the conversion of substituted cathinones to methylbenzamides in SH-SY5Y cells, Sci. Rep., 5, 14924, 10.1038\u002Fsrep14924\nDimba, 2004, Khat (Catha edulis)-induced apoptosis is inhibited by antagonists of caspase-1 and -8 in human leukaemia cells, Br. J. Cancer, 91, 1726, 10.1038\u002Fsj.bjc.6602197\nDolengevich-Segal, 2016, Severe psychosis, drug dependence, and hepatitis C related to slamming mephedrone, Case Rep. Psychiatry, 2016, 8379562\nEMCDDA, 2018\nEshleman, 1999, Characteristics of drug interactions with recombinant biogenic amine transporters expressed in the same cell type, J. Pharmacol. Exp. Ther., 289, 877\nEshleman, 2013, Substituted methcathinones differ in transporter and receptor interactions, Biochem. Pharmacol., 85, 1803, 10.1016\u002Fj.bcp.2013.04.004\nEshleman, 2017, Structure-activity relationships of substituted cathinones, with transporter binding, uptake, and release, J. Pharmacol. Exp. Ther., 360, 33, 10.1124\u002Fjpet.116.236349\nFeio-Azevedo, 2017, Toxicity of the amphetamine metabolites 4-hydroxyamphetamine and 4-hydroxynorephedrine in human dopaminergic differentiated SH-SY5Y cells, Toxicol. Lett., 269, 65, 10.1016\u002Fj.toxlet.2017.01.012\nFerreira, 2013, Neurotoxicity of \"ecstasy\" and its metabolites in human dopaminergic differentiated SH-SY5Y cells, Toxicol. Lett., 216, 159, 10.1016\u002Fj.toxlet.2012.11.015\nFurukawa, 1997, Neuroprotective action of cycloheximide involves induction of bcl-2 and antioxidant pathways, J. Cell Biol., 136, 1137, 10.1083\u002Fjcb.136.5.1137\nGaspar, 2015, 4F-PBP (4′-fluoro-alpha-pyrrolidinobutyrophenone), a new substance of abuse: Structural characterization and purity NMR profiling, Forensic Sci. Int., 252, 168, 10.1016\u002Fj.forsciint.2015.05.003\nGaspar, 2018, Proactive response to tackle the threat of emerging drugs: synthesis and toxicity evaluation of new cathinones, Forensic Sci. Int., 290, 146, 10.1016\u002Fj.forsciint.2018.07.001\nGerman, 2014, Bath salts and synthetic cathinones: an emerging designer drug phenomenon, Life Sci., 97, 2, 10.1016\u002Fj.lfs.2013.07.023\nGlennon, 2016, Neurobiology of 3,4-methylenedioxypyrovalerone (MDPV) and alpha-pyrrolidinovalerophenone (alpha-PVP), Brain Res. Bull., 126, 111, 10.1016\u002Fj.brainresbull.2016.04.011\nGunderson, 2013, Substituted cathinone products: a new trend in \"bath salts\" and other designer stimulant drug use, J. Addict. Med., 7, 153, 10.1097\u002FADM.0b013e31829084b7\nHan, 2006, Comparison of the monoamine transporters from human and mouse in their sensitivities to psychostimulant drugs, BMC Pharmacol., 6\nHondebrink, 2018, Effect fingerprinting of new psychoactive substances (NPS): what can we learn from in vitro data?, Pharmacol. Ther., 182, 193, 10.1016\u002Fj.pharmthera.2017.10.022\nJimenez, 2004, Neurotoxicity of amphetamine derivatives is mediated by caspase pathway activation in rat cerebellar granule cells, Toxicol. Appl. Pharmacol., 196, 223, 10.1016\u002Fj.taap.2003.12.017\nKanthasamy, 2006, Methamphetamine induces autophagy and apoptosis in a mesencephalic dopaminergic neuronal culture model: role of cathepsin-D in methamphetamine-induced apoptotic cell death, Ann. N. Y. Acad. Sci., 1074, 234, 10.1196\u002Fannals.1369.022\nKatz, 2014, Synthetic cathinones: \"a khat and mouse game\", Toxicol. Lett., 229, 349, 10.1016\u002Fj.toxlet.2014.06.020\nKelly, 2011, Cathinone derivatives: a review of their chemistry, pharmacology and toxicology, Drug Test. Anal., 3, 439, 10.1002\u002Fdta.313\nKolanos, 2015, Structural Modification of the Designer Stimulant alpha-Pyrrolidinovalerophenone (alpha-PVP) Influences Potency at Dopamine Transporters, ACS Chem. Neurosci., 6, 1726, 10.1021\u002Facschemneuro.5b00160\nLi, 2014, Autophagy activation is involved in 3,4-methylenedioxymethamphetamine (’ecstasy’)-induced neurotoxicity in cultured cortical neurons, PLoS One, 9, 10.1371\u002Fjournal.pone.0116565\nLopez-Arnau, 2015, Neuronal changes and oxidative stress in adolescent rats after repeated exposure to mephedrone, Toxicol. Appl. Pharmacol., 286, 27, 10.1016\u002Fj.taap.2015.03.015\nLudolph, 2006, Methylphenidate exerts no neurotoxic, but neuroprotective effects in vitro, J. Neural Transm. Vienna (Vienna), 113, 1927, 10.1007\u002Fs00702-006-0487-5\nLukandu, 2008, Khat (Catha edulis) induces reactive oxygen species and apoptosis in normal human oral keratinocytes and fibroblasts, Toxicol. Sci., 103, 311, 10.1093\u002Ftoxsci\u002Fkfn044\nMarinetti, 2013, Analysis of synthetic cathinones commonly found in bath salts in human performance and postmortem toxicology: method development, drug distribution and interpretation of results, J. Anal. Toxicol., 37, 135, 10.1093\u002Fjat\u002Fbks136\nMartinez-Clemente, 2014, Dose and time-dependent selective neurotoxicity induced by mephedrone in mice, PLoS One, 9, 10.1371\u002Fjournal.pone.0099002\nMartins, 2013, Differential effects of Methyl-4-Phenylpyridinium ion, rotenone, and paraquat on differentiated SH-SY5Y cells, J. Toxicol., 2013, 347312, 10.1155\u002F2013\u002F347312\nMarusich, 2014, Pharmacology of novel synthetic stimulants structurally related to the \"bath salts\" constituent 3,4-methylenedioxypyrovalerone (MDPV), Neuropharmacology, 87, 206, 10.1016\u002Fj.neuropharm.2014.02.016\nMas-Morey, 2013, Clinical toxicology and management of intoxications with synthetic cathinones (\"bath salts\"), J. Pharm. Pract., 26, 353, 10.1177\u002F0897190012465949\nMatsunaga, 2017, Alpha-Pyrrolidinononanophenone provokes apoptosis of neuronal cells through alterations in antioxidant properties, Toxicology, 386, 93, 10.1016\u002Fj.tox.2017.05.017\nMcDermott, 2011, The analysis of substituted cathinones. Part 2: an investigation into the phenylacetone based isomers of 4-methylmethcathinone and N-ethylcathinone, Forensic Sci. Int., 212, 13, 10.1016\u002Fj.forsciint.2011.06.030\nMosmann, 1983, Rapid colorimetric assay for cellular growth and survival: application to proliferation and cytotoxicity assays, J. Immunol. Methods, 65, 55, 10.1016\u002F0022-1759(83)90303-4\nNegus, 2017, Decoding the structure of abuse potential for new psychoactive substances: structure-activity relationships for abuse-related effects of 4-Substituted methcathinone analogs, Curr. Top. Behav. Neurosci., 32, 119, 10.1007\u002F7854_2016_18\nNic Daeid, 2014, Development of gas chromatography-mass spectrometry (GC-MS) and other rapid screening methods for the analysis of 16′legal high’ cathinone derivatives, Sci. Justice, 54, 22, 10.1016\u002Fj.scijus.2013.08.004\nOlives, 2012, Bath salts: the ivory wave of trouble, West. J. Emerg. Med., 13, 58, 10.5811\u002Fwestjem.2011.6.6782\nProkhorova, 2015, Role of the nucleus in apoptosis: signaling and execution, Cell. Mol. Life Sci., 72, 4593, 10.1007\u002Fs00018-015-2031-y\nProsser, 2012, The toxicology of bath salts: a review of synthetic cathinones, J. Med. Toxicol., 8, 33, 10.1007\u002Fs13181-011-0193-z\nReis-Mendes, 2017, Naphthoquinoxaline metabolite of mitoxantrone is less cardiotoxic than the parent compound and it can be a more cardiosafe drug in anticancer therapy, Arch. Toxicol., 91, 1871, 10.1007\u002Fs00204-016-1839-z\nRojek, 2016, New psychoactive substance alpha-PVP in a traffic accident case, Forensic Toxicol., 34, 403, 10.1007\u002Fs11419-016-0309-x\nSchmidt, 2010, Impact of drugs approved for treating ADHD on the cell survival and energy metabolism: an in-vitro study in human neuronal and immune cells, J. Psychopharmacol. (Oxford), 24, 1829, 10.1177\u002F0269881109105563\nSiedlecka-Kroplewska, 2018, The designer drug 3-Fluoromethcathinone induces oxidative stress and activates autophagy in HT22 neuronal cells, Neurotox. Res., 34, 388, 10.1007\u002Fs12640-018-9898-y\nSimmler, 2013, Pharmacological characterization of designer cathinones in vitro, Br. J. Pharmacol., 168, 458, 10.1111\u002Fj.1476-5381.2012.02145.x\nStiles, 2016, Bath salt-induced psychosis: nursing assessment, diagnosis, treatment, and outcomes, Perspect. Psychiatr. Care, 52, 68, 10.1111\u002Fppc.12101\nStumm, 1999, Amphetamines induce apoptosis and regulation of bcl-x splice variants in neocortical neurons, FASEB J., 13, 1065, 10.1096\u002Ffasebj.13.9.1065\nTaiwo, 2008, Mechanism of tiron as scavenger of superoxide ions and free electrons, Spectroscopy, 22, 491, 10.1155\u002F2008\u002F953692\nTeixeira-Gomes, 2015, The neurotoxicity of amphetamines during the adolescent period, Int. J. Dev. Neurosci., 41, 44, 10.1016\u002Fj.ijdevneu.2014.12.001\nThornton, 2014, Bath salts and other emerging toxins, Pediatr. Emerg. Care, 30, 47, 10.1097\u002FPEC.0000000000000069\nThornton, 2012, Psychosis from a bath salt product containing flephedrone and MDPV with serum, urine, and product quantification, J. Med. Toxicol., 8, 310, 10.1007\u002Fs13181-012-0232-4\nValente, 2017, Methylone and MDPV activate autophagy in human dopaminergic SH-SY5Y cells: a new insight into the context of beta-keto amphetamines-related neurotoxicity, Arch. Toxicol., 91, 3663, 10.1007\u002Fs00204-017-1984-z\nValente, 2016, Editor’s highlight: characterization of hepatotoxicity mechanisms triggered by designer cathinone drugs (beta-Keto amphetamines), Toxicol. Sci., 153, 89, 10.1093\u002Ftoxsci\u002Fkfw105\nValente, 2017, Neurotoxicity of beta-keto amphetamines: deathly mechanisms elicited by Methylone and MDPV in human dopaminergic SH-SY5Y cells, ACS Chem. Neurosci., 8, 850, 10.1021\u002Facschemneuro.6b00421\nValente, 2014, Khat and synthetic cathinones: a review, Arch. Toxicol., 88, 15, 10.1007\u002Fs00204-013-1163-9\nWatterson, 2014, Synthetic cathinones and their rewarding and reinforcing effects in rodents, Adv. Neurosci. (Hindawi), 2014, 209875\nWeaver, 2015, Designer drugs 2015: assessment and management, Addict. Sci. Clin. Pract., 10, 8, 10.1186\u002Fs13722-015-0024-7\nWood, 2012, Mephedrone (4-methylmethcathinone): what is new in our understanding of its use and toxicity, Prog. Neuropsychopharmacol. Biol. Psychiatry, 39, 227, 10.1016\u002Fj.pnpbp.2012.04.020\nZhang, 2018, Autophagy regulates high concentrations of iodide-induced apoptosis in SH-SY5Y cells, Toxicol. Lett., 284, 129, 10.1016\u002Fj.toxlet.2017.12.007\nZuba, 2013, Detection of buphedrone in biological and non-biological material-two case reports, Forensic Sci. Int., 227, 15, 10.1016\u002Fj.forsciint.2012.08.034\nZwartsen, 2017, Measuring inhibition of monoamine reuptake transporters by new psychoactive substances (NPS) in real-time using a high-throughput, fluorescence-based assay, Toxicol. In Vitro, 45, 60, 10.1016\u002Fj.tiv.2017.05.010",{"VOID":1622},"10.1016\u002Fj.neuro.2019.08.009","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X18304972",[1625,1640,1653,1677,1701,1714,1727],{"id":1626,"sortIndex":32,"researcher":28,"roles":1627,"affiliations":1628,"properties":1637,"displayName":1639,"givenName":28,"familyName":28},"cdb71b75-82ec-4858-8283-54d35752ada0",[956],[1629],{"id":1630,"sortIndex":32,"affiliation":1631,"properties":28},"4b0ea101-c998-4667-9635-e44821483233",{"id":1630,"createTime":28,"updateTime":28,"relativeEntities":1632,"slug":28,"properties":1633,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1636,"statistic":28},[],{"title":1634},{"VI":1635},"UCIBIO, REQUIMTE (Rede de Química e Tecnologia), Laboratório de Toxicologia, Departamento de Ciências Biológicas, Faculdade de Farmácia, Universidade do Porto, Portugal",[],{"title":1638},{"VI":1639},"Jorge Soares",{"id":1641,"sortIndex":40,"researcher":28,"roles":1642,"affiliations":1643,"properties":1650,"displayName":1652,"givenName":28,"familyName":28},"50b56b2a-dc64-4d2c-b9b9-e49240eb9f22",[956],[1644],{"id":1630,"sortIndex":32,"affiliation":1645,"properties":28},{"id":1630,"createTime":28,"updateTime":28,"relativeEntities":1646,"slug":28,"properties":1647,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1649,"statistic":28},[],{"title":1648},{"VI":1635},[],{"title":1651},{"VI":1652},"Vera Marisa Costa",{"id":1654,"sortIndex":123,"researcher":28,"roles":1655,"affiliations":1656,"properties":1674,"displayName":1676,"givenName":28,"familyName":28},"87463fbd-c094-4eef-884d-ad2764076f29",[956],[1657,1665],{"id":1658,"sortIndex":32,"affiliation":1659,"properties":28},"2a241867-b5c4-4630-828b-0fc3cf5cadd8",{"id":1658,"createTime":28,"updateTime":28,"relativeEntities":1660,"slug":28,"properties":1661,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1664,"statistic":28},[],{"title":1662},{"VI":1663},"BioISI – Instituto de Biossistemas e Ciências Integrativas, Faculdade de Ciências, Universidade de Lisboa, Portugal",[],{"id":1666,"sortIndex":40,"affiliation":1667,"properties":1673},"2da68594-081a-41d7-8b1a-09f661849f6f",{"id":1666,"createTime":28,"updateTime":28,"relativeEntities":1668,"slug":28,"properties":1669,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1672,"statistic":28},[],{"title":1670},{"VI":1671},"MARE - Centro de Ciências do Mar e do Ambiente, Escola Superior de Turismo e Tecnologia do Mar, Instituto Politécnico de Leiria, Portugal",[],{},{"title":1675},{"VI":1676},"Helena Gaspar",{"id":1678,"sortIndex":42,"researcher":28,"roles":1679,"affiliations":1680,"properties":1698,"displayName":1700,"givenName":28,"familyName":28},"b4ed7abe-e556-4520-896e-c1c5821c352c",[956],[1681,1689],{"id":1682,"sortIndex":32,"affiliation":1683,"properties":28},"3bf15f80-68f6-4a51-b8e2-0a63cb35dd11",{"id":1682,"createTime":28,"updateTime":28,"relativeEntities":1684,"slug":28,"properties":1685,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1688,"statistic":28},[],{"title":1686},{"VI":1687},"Centro de Química e Bioquímica (CQB), Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade de Lisboa, Portugal",[],{"id":1690,"sortIndex":40,"affiliation":1691,"properties":1697},"6d14a0af-a330-4e34-b674-743b1cc18f57",{"id":1690,"createTime":28,"updateTime":28,"relativeEntities":1692,"slug":28,"properties":1693,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1696,"statistic":28},[],{"title":1694},{"VI":1695},"Centro de Química Estrutural, Faculdade de Ciências, Universidade de Lisboa, Portugal",[],{},{"title":1699},{"VI":1700},"Susana Santos",{"id":1702,"sortIndex":45,"researcher":28,"roles":1703,"affiliations":1704,"properties":1711,"displayName":1713,"givenName":28,"familyName":28},"3f74c10a-aea0-47dc-b630-d46129bf9af8",[956],[1705],{"id":1630,"sortIndex":32,"affiliation":1706,"properties":28},{"id":1630,"createTime":28,"updateTime":28,"relativeEntities":1707,"slug":28,"properties":1708,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1710,"statistic":28},[],{"title":1709},{"VI":1635},[],{"title":1712},{"VI":1713},"Maria de Lourdes Bastos",{"id":1715,"sortIndex":46,"researcher":28,"roles":1716,"affiliations":1717,"properties":1724,"displayName":1726,"givenName":28,"familyName":28},"030fd994-8c85-4391-afc4-040be30ae9bf",[956],[1718],{"id":1630,"sortIndex":32,"affiliation":1719,"properties":28},{"id":1630,"createTime":28,"updateTime":28,"relativeEntities":1720,"slug":28,"properties":1721,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1723,"statistic":28},[],{"title":1722},{"VI":1635},[],{"title":1725},{"VI":1726},"Félix Carvalho",{"id":1728,"sortIndex":48,"researcher":28,"roles":1729,"affiliations":1730,"properties":1746,"displayName":1748,"givenName":28,"familyName":28},"f0004b6a-a0e6-400b-9191-e09644dd249c",[956],[1731,1737],{"id":1630,"sortIndex":32,"affiliation":1732,"properties":28},{"id":1630,"createTime":28,"updateTime":28,"relativeEntities":1733,"slug":28,"properties":1734,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1736,"statistic":28},[],{"title":1735},{"VI":1635},[],{"id":1738,"sortIndex":40,"affiliation":1739,"properties":1745},"2692d755-7703-4ac9-8d74-54bcb9b6e3e8",{"id":1738,"createTime":28,"updateTime":28,"relativeEntities":1740,"slug":28,"properties":1741,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1744,"statistic":28},[],{"title":1742},{"VI":1743},"FP-ENAS (Unidade de Investigação UFP em Energia, Ambiente e Saúde), CEBIMED (Centro de Estudos em Biomedicina), Faculdade de Ciências da Saúde, Universidade Fernando Pessoa, Portugal",[],{},{"title":1747},{"VI":1748},"João Paulo Capela",{"url":1623,"publisher":1750,"properties":1785},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1751,"slug":872,"properties":1752,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":1755,"manageAffiliations":1764,"indexDatabases":1770,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1753,"title":1754},{"VOID":875},{"EN":872},[1756,1760],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":1757,"label":1758,"description":1759,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":1761,"label":1762,"description":1763,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[1765],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":1766,"slug":28,"properties":1767,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1769,"statistic":28},[],{"title":1768},{"EN":897},[],[1771,1778],{"id":901,"indexDatabase":1772,"url":907,"indexYears":908,"academicFieldIds":1777,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1773,"label":1774,"description":1775,"key":781,"publicationTags":1776,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":1779,"url":926,"indexYears":28,"academicFieldIds":1784,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":1780,"label":1781,"description":1782,"key":923,"publicationTags":1783,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":1786,"volume":1788},{"VOID":1787},"158-173",{"VOID":1789},"75","2019-12-01",2019,[912,925],{"id":1794,"createTime":1795,"updateTime":1796,"relativeEntities":1797,"slug":1798,"properties":1799,"entityType":948,"verifyStatus":26,"verifyTime":1796,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":1806,"fullTextUrl":28,"authors":1807,"publicationType":995,"publisherRelationship":1969,"citationCount":28,"citationInfo":28,"publishDate":2010,"publishYear":2011,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":2012,"openAccess":28,"references":28,"isForceReanalyzing":1040},"017a8745-bac7-4b73-b035-1a05bd73582e","2024-01-05T02:05:07.883+00:00","2025-02-18T13:49:55.418+00:00",[],"The-application-of-PBPK-models-in-estimating-human-brain-tissue-manganese-concentrations",{"title":1800,"references":1802,"doi":1804},{"EN":1801},"The application of PBPK models in estimating human brain tissue manganese concentrations",{"VOID":1803},"ATSDR, 2012\nAndersen, 2010, Multi-dose-route, multi-species pharmacokinetic models for manganese and their use in risk assessment, J. Toxicol. Environ. Health A, 73, 217, 10.1080\u002F15287390903340849\nAndráSI, 1990, Determination of main and trace element contents in human brain by NAA and ICP-AES methods, 691\nAnjilvel, 1995, A multiple-path model of particle deposition in the rat lung, Fundam. Appl. Toxicol.: Off. J. Soc. Toxicol., 28, 41, 10.1006\u002Ffaat.1995.1144\nApostoli, 2000, Are current biomarkers suitable for the assessment of manganese exposure in individual workers?, Am. J. Ind. Med., 37, 283, 10.1002\u002F(SICI)1097-0274(200003)37:3\u003C283::AID-AJIM6>3.0.CO;2-E\nAschner, 2005, Nutritional aspects of manganese homeostasis, Mol. Aspects Med., 26, 353, 10.1016\u002Fj.mam.2005.07.003\nAschner, 2007, Manganese: recent advances in understanding its transport and neurotoxicity, Toxicol. Appl. Pharmacol., 221, 131, 10.1016\u002Fj.taap.2007.03.001\nAschner, 2009, Manganese and its role in Parkinson's disease: from transport to neuropathology, Neuromol. Med., 11, 252, 10.1007\u002Fs12017-009-8083-0\nAsgharian, 2001, Particle deposition in a multiple-path model of the human lung, Aerosol Sci. Technol., 34, 332, 10.1080\u002F02786820119122\nBaker, 2014, Blood manganese as an exposure biomarker: state of the evidence, J. Occup. Environ. Hyg., 11, 210, 10.1080\u002F15459624.2013.852280\nBast-Pettersen, 2004, Neuropsychological function in manganese alloy plant workers, Int. Arch. Occup. Environ. Health, 77, 277, 10.1007\u002Fs00420-003-0491-0\nBerlinger, 2011, Physicochemical characterisation of different welding aerosols, Anal. Bioanal. Chem., 399, 1773, 10.1007\u002Fs00216-010-4185-7\nBouchard, 2007, Neurobehavioral functioning after cessation of manganese exposure: a follow-up after 14 years, Am. J. Ind. Med., 50, 831, 10.1002\u002Fajim.20407\nBouchard, 2007, Neuropsychiatric symptoms and past manganese exposure in a ferro-alloy plant, Neurotoxicology, 28, 290, 10.1016\u002Fj.neuro.2006.08.002\nBouchard, 2008, Manganese cumulative exposure and symptoms: a follow-up study of alloy workers, Neurotoxicology, 29, 577, 10.1016\u002Fj.neuro.2008.04.013\nBowler, 2006, Manganese exposure: neuropsychological and neurological symptoms and effects in welders, Neurotoxicology, 27, 315, 10.1016\u002Fj.neuro.2005.10.007\nBowler, 2007, Sequelae of fume exposure in confined space welding: a neurological and neuropsychological case series, Neurotoxicology, 28, 298, 10.1016\u002Fj.neuro.2006.11.001\nBowler, 2007, Dose-effect relationships between manganese exposure and neurological, neuropsychological and pulmonary function in confined space bridge welders, Occup. Environ. Med., 64, 167, 10.1136\u002Foem.2006.028761\nBush, 1995, Essential and toxic element concentrations in fresh and formalin-fixed human autopsy tissues, Clin. Chem., 41, 284, 10.1093\u002Fclinchem\u002F41.2.284\nCersosimo, 2006, The diagnosis of manganese-induced parkinsonism, Neurotoxicology, 27, 340, 10.1016\u002Fj.neuro.2005.10.006\nChang, 2010, Pallidal index measured with three-dimensional T1-weighted gradient echo sequence is a good predictor of manganese exposure in welders, J. Magn. Reson. Imaging: JMRI, 31, 1020, 10.1002\u002Fjmri.22104\nChen, 2015, Age- and manganese-dependent modulation of dopaminergic phenotypes in a C elegans DJ-1 genetic model of Parkinson's disease, Metallomics, 7, 289, 10.1039\u002FC4MT00292J\nChen, 2015, Manganese homeostasis in the nervous system, J. Neurochem., 134, 601, 10.1111\u002Fjnc.13170\nCotzias, 1968, Chronic manganese poisoning. Clearance of tissue manganese concentrations with persistance of the neurological picture, Neurology, 18, 376, 10.1212\u002FWNL.18.4.376\nCrossgrove, 2004, Manganese toxicity upon overexposure, NMR Biomed., 17, 544, 10.1002\u002Fnbm.931\nCrump, 1998, On summarizing group exposures in risk assessment: is an arithmetic mean or a geometric mean more appropriate?, Risk Anal.: Off. Publ. Soc. Risk Anal., 18, 293, 10.1111\u002Fj.1539-6924.1998.tb01296.x\nDavis, 1993, Manganese metabolism in rats: an improved methodology for assessing gut endogenous losses. Proceedings of the Society for Experimental Biology and Medicine, Soc. Exp. Biol. Med. (New York, N.Y.), 202, 103, 10.3181\u002F00379727-202-43518\nDeWitt, 2013, Manganese efflux in Parkinsonism: insights from newly characterized SLC30A10 mutations, Biochem. Biophys. Res. Commun., 432, 1, 10.1016\u002Fj.bbrc.2013.01.058\nDorman, 2001, Influence of particle solubility on the delivery of inhaled manganese to the rat brain: manganese sulfate and manganese tetroxide pharmacokinetics following repeated (14-day) exposure, Toxicol. Appl. Pharmacol., 170, 79, 10.1006\u002Ftaap.2000.9088\nDorman, 2004, Nasal toxicity of manganese sulfate and manganese phosphate in young male rats following subchronic (13-week) inhalation exposure, Inhal. Toxicol., 16, 481, 10.1080\u002F08958370490439687\nDorman, 2006, Tissue manganese concentrations in young male rhesus monkeys following subchronic manganese sulfate inhalation, Toxicol. Sci., 92, 201, 10.1093\u002Ftoxsci\u002Fkfj206\nDouglas, 2010, Chronic exposure to Mn inhalation may have lasting effects: a physiologically-based toxicokinetic model in rats, Toxicol. Environ. Chem., 92, 279, 10.1080\u002F02772240902830599\nEllingsen, 2003, Endocrine and immunologic markers in manganese alloy production workers, Scand. J. Work, Environ. Health, 29, 230, 10.5271\u002Fsjweh.726\nEllingsen, 2003, Iron status in manganese alloy production workers, J. Appl. Toxicol.: JAT, 23, 239, 10.1002\u002Fjat.913\nEllingsen, 2006, Air exposure assessment and biological monitoring of manganese and other major welding fume components in welders, J. Environ. Monit.: JEM, 8, 1078, 10.1039\u002Fb605549d\nEllingsen, 2008, A neurobehavioral study of current and former welders exposed to manganese, Neurotoxicology, 29, 48, 10.1016\u002Fj.neuro.2007.08.014\nFinley, 1994, Sex affects manganese absorption and retention by humans from a diet adequate in manganese, Am. J. Clin. Nutr., 60, 949, 10.1093\u002Fajcn\u002F60.6.949\nFreeland-Graves, 1994, Derivation of manganese estimated safe and adequate daily dietary intakes, Risk Assess. Essent. Elem., 237\nGibbs, 1999, Focused medical surveillance: a search for subclinical movement disorders in a cohort of U.S. workers exposed to low levels of manganese dust, Neurotoxicology, 20, 299\nGoldberg, 1981, Determination of Cu, Mn, Fe, and Ca in six regions of normal human brain, by atomic absorption spectroscopy, Clin. Chem., 27, 562, 10.1093\u002Fclinchem\u002F27.4.562\nGuilarte, 2010, Manganese and Parkinson's disease: a critical review and new findings, Environ. Health Perspect., 118, 1071, 10.1289\u002Fehp.0901748\nGunier, 2014, Determinants of manganese levels in house dust samples from the CHAMACOS cohort, Sci. Total Environ., 497, 360, 10.1016\u002Fj.scitotenv.2014.08.005\nGunter, 2013, Manganese transport via the transferrin mechanism, Neurotoxicology, 34, 118, 10.1016\u002Fj.neuro.2012.10.018\nHC, 2010\nICRP, 1994, Human respiratory tract model for radiological protection. A report of a Task Group of the International Commission on Radiological Protection, Ann. ICRP, 24, 1\nIEH, 2004\nIwami, 1994, Motor neuron disease on the Kii Peninsula of Japan: excess manganese intake from food coupled with low magnesium in drinking water as a risk factor, Sci. Total Environ., 149, 121, 10.1016\u002F0048-9697(94)90010-8\nJarvisalo, 1992, Urinary and blood manganese in occupationally nonexposed populations and in manual metal arc welders of mild steel, Int. Arch. Occup. Environ. Health, 63, 495, 10.1007\u002FBF00572116\nJenkins, 2005, Particle size distribution of gas metal and flux cored arc welding fumes, Weld. Res., 84, 156s\nJiang, 2007, Brain magnetic resonance imaging and manganese concentrations in red blood cells of smelting workers: search for biomarkers of manganese exposure, Neurotoxicology, 28, 126, 10.1016\u002Fj.neuro.2006.08.005\nKim, 2005, Pallidal index on MRI as a target organ dose of manganese: structural equation model analysis, Neurotoxicology, 26, 351, 10.1016\u002Fj.neuro.2005.01.007\nKlos, 2006, Neuropsychological profiles of manganese neurotoxicity, Eur. J. Neurol., 13, 1139, 10.1111\u002Fj.1468-1331.2006.01407.x\nKondakis, 1989, Possible health effects of high manganese concentration in drinking water, Arch. Environ. Health: Int. J., 44, 175, 10.1080\u002F00039896.1989.9935883\nKrebs, 2014, Assessment of trace elements in human brain using inductively coupled plasma mass spectrometry, J. Trace Elem. Med. Biol.: Organ Soc. Miner. Trace Elem., 28, 1, 10.1016\u002Fj.jtemb.2013.09.006\nLayrargues, 1995, Accumulation of manganese and copper in pallidum of cirrhotic patients: role in the pathogenesis of hepatic encephalopathy?, Metab. Brain Dis., 10, 353, 10.1007\u002FBF02109365\nLeavens, 2007, Evaluating transport of manganese from olfactory mucosa to striatum by pharmacokinetic modeling, Toxicol. Sci., 97, 265, 10.1093\u002Ftoxsci\u002Fkfm061\nLi, 2014, Pallidal index as biomarker of manganese brain accumulation and associated with manganese levels in blood: a meta-analysis, PLoS One, 9, e93900, 10.1371\u002Fjournal.pone.0093900\nLjung, 2007, Time to re-evaluate the guideline value for manganese in drinking water?, Environ. Health Perspect., 1533, 10.1289\u002Fehp.10316\nLucchini, 1995, Neurobehavioral effects of manganese in workers from a ferroalloy plant after temporary cessation of exposure, Scand . J. Work Environ. Health, 21, 143, 10.5271\u002Fsjweh.1369\nLucchini, 1999, Long-term exposure to low levels of manganese oxides and neurofunctional changes in ferroalloy workers, Neurotoxicology, 20, 287\nMaeda, 1997, Brain MR imaging in patients with hepatic cirrhosis: relationship between high intensity signal in basal ganglia on T1-weighted images and elemental concentrations in brain, Neuroradiology, 39, 546, 10.1007\u002Fs002340050464\nMahoney, 1968, Studies on manganese: III. The biological half-life of radiomanganese in man and factors which affect this half-life, J. Clin. Invest., 47, 643, 10.1172\u002FJCI105760\nMalecki, 1996, Biliary manganese excretion in conscious rats is affected by acute and chronic manganese intake but not by dietary fat, J. Nutr., 126, 489, 10.1093\u002Fjn\u002F126.2.489\nMattison, 2017, Severity scoring of manganese health effects for categorical regression, J. Neuro. Toxicol., 58, 203\nMergler, 1994, Nervous system dysfunction among workers with long-term exposure to manganese, Environ. Res., 64, 151, 10.1006\u002Fenrs.1994.1013\nMilton, 2016, Modeling U-shaped exposure-response relationships for agents that demonstrate toxicity due to both excess and deficiency, Risk Anal.: Off. Publ. Soc. Risk Anal.\nMyers, 2003, The utility of biological monitoring for manganese in ferroalloy smelter workers in South Africa, Neurotoxicology, 24, 875, 10.1016\u002FS0161-813X(03)00082-2\nMyers, 2003, The nervous system effects of occupational exposure on workers in a South African manganese smelter, Neurotoxicology, 24, 885, 10.1016\u002FS0161-813X(03)00081-0\nNong, 2008, Pharmacokinetic modeling of manganese in the rat IV: Assessing factors that contribute to brain accumulation during inhalation exposure, J. Toxicol. Environ. Health A, 71, 413, 10.1080\u002F15287390701838697\nNong, 2009, Manganese tissue dosimetry in rats and monkeys: accounting for dietary and inhaled Mn with physiologically based pharmacokinetic modeling, Toxicol. Sci., 108, 22, 10.1093\u002Ftoxsci\u002Fkfn264\nNormandin, 2002, Assessment of bioaccumulation, neuropathology, and neurobehavior following subchronic (90 days) inhalation in Sprague-Dawley rats exposed to manganese phosphate, Toxicol. Appl. Pharmacol., 183, 135, 10.1006\u002Ftaap.2002.9464\nO'Neal, 2015, Manganese toxicity upon overexposure: a decade in review, Curr. Environ. Health. Rep., 2, 315, 10.1007\u002Fs40572-015-0056-x\nOlanow, 2004, Manganese-induced parkinsonism and Parkinson's disease, Ann. N. Y. Acad. Sci., 1012, 209, 10.1196\u002Fannals.1306.018\nPark, 2009, Exposure-response relationship and risk assessment for cognitive deficits in early welding-induced manganism, J. Occup. Environ. Med.\u002FAm. Coll. Occup. Environ. Med., 51, 1125, 10.1097\u002FJOM.0b013e3181bd8114\nPerl, 2007, The neuropathology of manganese-induced Parkinsonism, J. Neuropathol. Exp. Neurol., 66, 675, 10.1097\u002Fnen.0b013e31812503cf\nPesch, 2012, Levels and predictors of airborne and internal exposure to manganese and iron among welders, J. Exposure Sci. Environ. Epidemiol., 22, 291, 10.1038\u002Fjes.2012.9\nPost, 1999, Manganese oxide minerals: crystal structures and economic and environmental significance, Proc. Natl. Acad. Sci., 96, 3447, 10.1073\u002Fpnas.96.7.3447\nRoels, 1987, Relationship between external and internal parameters of exposure to manganese in workers from a manganese oxide and salt producing plant, Am. J. Ind. Med., 11, 297, 10.1002\u002Fajim.4700110307\nRoels, 1992, Assessment of the permissible exposure level to manganese in workers exposed to manganese dioxide dust, Br. J. Ind. Med., 49, 25\nRoels, 1999, Prospective study on the reversibility of neurobehavioral effects in workers exposed to manganese dioxide, Neurotoxicology, 20, 255\nSalehi, 2003, Bioaccumulation and locomotor effects of manganese phosphate\u002Fsulfate mixture in Sprague-Dawley rats following subchronic (90 days) inhalation exposure, Toxicol. Appl. Pharmacol., 191, 264, 10.1016\u002FS0041-008X(03)00238-2\nSchroeter, 2011, Analysis of manganese tracer kinetics and target tissue dosimetry in monkeys and humans with multi-route physiologically based pharmacokinetic models, Toxicol. Sci., 120, 481, 10.1093\u002Ftoxsci\u002Fkfq389\nSchroeter, 2012, Application of a multi-route physiologically based pharmacokinetic model for manganese to evaluate dose-dependent neurological effects in monkeys, Toxicol. Sci., 129, 432, 10.1093\u002Ftoxsci\u002Fkfs212\nSmith, 2007, Biomarkers of Mn exposure in humans, Am. J. Ind. Med., 50, 801, 10.1002\u002Fajim.20506\nTan, 2011, Regulation of intracellular manganese homeostasis by kufor-Rakeb syndrome-associated ATP13A2 protein, J. Biol. Chem., 286, 29654, 10.1074\u002Fjbc.M111.233874\nTaylor, 2012, Update on a pharmacokinetic-Centric alternative tier II program for MMT-Part II: physiologically based pharmacokinetic modeling and manganese risk assessment, J. Toxicol., 2012, 791431, 10.1155\u002F2012\u002F791431\nTeeguarden, 2007, Pharmacokinetic modeling of manganese. I. Dose dependencies of uptake and elimination, J. Toxicol. Environ. Health A, 70, 1493, 10.1080\u002F15287390701384601\nTeeguarden, 2007, Pharmacokinetic modeling of manganese. II. Hepatic processing after ingestion and inhalation, J. Toxicol. Environ. Health A, 70, 1505, 10.1080\u002F15287390701384619\nTeeguarden, 2007, Pharmacokinetic modeling of manganese. III. Physiological approaches accounting for background and tracer kinetics, J. Toxicol. Environ. Health A, 70, 1515, 10.1080\u002F15287390701384635\nTracqui, 1995, Determination of manganese in human brain samples, Forensic Sci. Int., 76, 199, 10.1016\u002F0379-0738(95)01822-0\nUSEPA, 1993, Manganese (CASRN 7439-96-5)\nUSEPA, 2006, CatReg software for categorical regression analysis\nWHO, 2011, Manganese in drinking-water\nWHO\u002FIPCS, 2010, Characterization and application of physiologically based pharmacokinetic models in risk assessment\nWang, 2006, The effect of occupational exposure to metals on the nervous system function in welders, J. Occup. Health, 48, 100, 10.1539\u002Fjoh.48.100\nYoung, 2005, The nervous system effects of occupational exposure to manganese–measured as respirable dust–in a South African manganese smelter, Neurotoxicology, 26, 993, 10.1016\u002Fj.neuro.2005.05.002\nZheng, 2011, Biomarkers of manganese intoxication, Neurotoxicology, 32, 1, 10.1016\u002Fj.neuro.2010.10.002",{"VOID":1805},"10.1016\u002Fj.neuro.2016.12.001","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X16302522",[1808,1823,1845,1858,1873,1893,1908,1921,1936,1956],{"id":1809,"sortIndex":32,"researcher":28,"roles":1810,"affiliations":1811,"properties":1820,"displayName":1822,"givenName":28,"familyName":28},"8b5c540a-9e04-4a81-90bd-48ee14d1be08",[956],[1812],{"id":1813,"sortIndex":32,"affiliation":1814,"properties":28},"012ec225-2818-4584-ab67-84290416edaa",{"id":1813,"createTime":28,"updateTime":28,"relativeEntities":1815,"slug":28,"properties":1816,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1819,"statistic":28},[],{"title":1817},{"VI":1818},"Risk Sciences International, 55 Metcalfe Street, Suite 700, K1P 6L5, Ottawa, Canada",[],{"title":1821},{"VI":1822},"Siva P. Ramoju",{"id":1824,"sortIndex":40,"researcher":28,"roles":1825,"affiliations":1826,"properties":1842,"displayName":1844,"givenName":28,"familyName":28},"fa6b5198-94b0-4619-8007-0fcfe7a1f9df",[956],[1827,1833],{"id":1813,"sortIndex":32,"affiliation":1828,"properties":28},{"id":1813,"createTime":28,"updateTime":28,"relativeEntities":1829,"slug":28,"properties":1830,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1832,"statistic":28},[],{"title":1831},{"VI":1818},[],{"id":1834,"sortIndex":40,"affiliation":1835,"properties":1841},"4e568ef1-131b-4bbd-9943-b72a6d341323",{"id":1834,"createTime":28,"updateTime":28,"relativeEntities":1836,"slug":28,"properties":1837,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1840,"statistic":28},[],{"title":1838},{"VI":1839},"Samuel R. McLaughlin Centre for Population Health Risk Assessment, Faculty of Medicine, 850 Peter Morand Crescent, Room 119, University of Ottawa, Ottawa, K1G 3Z7, Canada",[],{},{"title":1843},{"VI":1844},"Donald R. Mattison",{"id":1846,"sortIndex":123,"researcher":28,"roles":1847,"affiliations":1848,"properties":1855,"displayName":1857,"givenName":28,"familyName":28},"0781e8e9-1130-43b4-b25e-c305565dc4ef",[956],[1849],{"id":1813,"sortIndex":32,"affiliation":1850,"properties":28},{"id":1813,"createTime":28,"updateTime":28,"relativeEntities":1851,"slug":28,"properties":1852,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1854,"statistic":28},[],{"title":1853},{"VI":1818},[],{"title":1856},{"VI":1857},"Brittany Milton",{"id":1859,"sortIndex":42,"researcher":28,"roles":1860,"affiliations":1861,"properties":1870,"displayName":1872,"givenName":28,"familyName":28},"31b141cc-494f-4200-9c89-6c3d14b9570d",[956],[1862],{"id":1863,"sortIndex":32,"affiliation":1864,"properties":28},"6f1c6e5c-213a-4918-a391-3e6949e1428f",{"id":1863,"createTime":28,"updateTime":28,"relativeEntities":1865,"slug":28,"properties":1866,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1869,"statistic":28},[],{"title":1867},{"VI":1868},"International Manganese Institute, 17 rue Duphot, 75001 Paris, France",[],{"title":1871},{"VI":1872},"Doreen McGough",{"id":1874,"sortIndex":45,"researcher":28,"roles":1875,"affiliations":1876,"properties":1890,"displayName":1892,"givenName":28,"familyName":28},"f8913d87-f0e7-407c-a64b-9da1f36add8c",[956],[1877,1883],{"id":1813,"sortIndex":32,"affiliation":1878,"properties":28},{"id":1813,"createTime":28,"updateTime":28,"relativeEntities":1879,"slug":28,"properties":1880,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1882,"statistic":28},[],{"title":1881},{"VI":1818},[],{"id":1834,"sortIndex":40,"affiliation":1884,"properties":1889},{"id":1834,"createTime":28,"updateTime":28,"relativeEntities":1885,"slug":28,"properties":1886,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1888,"statistic":28},[],{"title":1887},{"VI":1839},[],{},{"title":1891},{"VI":1892},"Natalia Shilnikova",{"id":1894,"sortIndex":46,"researcher":28,"roles":1895,"affiliations":1896,"properties":1905,"displayName":1907,"givenName":28,"familyName":28},"58887469-1324-4bee-b939-37ab12ff6a60",[956],[1897],{"id":1898,"sortIndex":32,"affiliation":1899,"properties":28},"3990ddea-2ede-406b-a366-422a71bf1e3d",{"id":1898,"createTime":28,"updateTime":28,"relativeEntities":1900,"slug":28,"properties":1901,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1904,"statistic":28},[],{"title":1902},{"VI":1903},"ScitoVation, 6 Davis Drive, PO Box 110566, Research Triangle Park, NC 27709,United States",[],{"title":1906},{"VI":1907},"Harvey J. Clewell",{"id":1909,"sortIndex":48,"researcher":28,"roles":1910,"affiliations":1911,"properties":1918,"displayName":1920,"givenName":28,"familyName":28},"0a140c02-3dc9-4263-8d4e-99a022201c90",[956],[1912],{"id":1898,"sortIndex":32,"affiliation":1913,"properties":28},{"id":1898,"createTime":28,"updateTime":28,"relativeEntities":1914,"slug":28,"properties":1915,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1917,"statistic":28},[],{"title":1916},{"VI":1903},[],{"title":1919},{"VI":1920},"Miyoung Yoon",{"id":1922,"sortIndex":49,"researcher":28,"roles":1923,"affiliations":1924,"properties":1933,"displayName":1935,"givenName":28,"familyName":28},"2508d620-0a10-4ac7-99bd-4d05ce008c69",[956],[1925],{"id":1926,"sortIndex":32,"affiliation":1927,"properties":28},"e66f0f3c-910b-404a-859a-3a755280c5f0",{"id":1926,"createTime":28,"updateTime":28,"relativeEntities":1928,"slug":28,"properties":1929,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1932,"statistic":28},[],{"title":1930},{"VI":1931},"Nickel Producers Environmental Research Association (NiPERA), 2525 Meridian Parkway, Suite 240, Durham, NC 27713, United States",[],{"title":1934},{"VI":1935},"Michael D. Taylor",{"id":1937,"sortIndex":357,"researcher":28,"roles":1938,"affiliations":1939,"properties":1953,"displayName":1955,"givenName":28,"familyName":28},"4198e35b-72ce-4355-86ed-2fe3ef261be1",[956],[1940,1946],{"id":1813,"sortIndex":32,"affiliation":1941,"properties":28},{"id":1813,"createTime":28,"updateTime":28,"relativeEntities":1942,"slug":28,"properties":1943,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1945,"statistic":28},[],{"title":1944},{"VI":1818},[],{"id":1834,"sortIndex":40,"affiliation":1947,"properties":1952},{"id":1834,"createTime":28,"updateTime":28,"relativeEntities":1948,"slug":28,"properties":1949,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1951,"statistic":28},[],{"title":1950},{"VI":1839},[],{},{"title":1954},{"VI":1955},"Daniel Krewski",{"id":1957,"sortIndex":145,"researcher":28,"roles":1958,"affiliations":1959,"properties":1966,"displayName":1968,"givenName":28,"familyName":28},"59f14e79-fc83-4c56-acdb-274b9062ab1a",[956],[1960],{"id":1898,"sortIndex":32,"affiliation":1961,"properties":28},{"id":1898,"createTime":28,"updateTime":28,"relativeEntities":1962,"slug":28,"properties":1963,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1965,"statistic":28},[],{"title":1964},{"VI":1903},[],{"title":1967},{"VI":1968},"Melvin E. Andersen",{"url":1806,"publisher":1970,"properties":2005},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":1971,"slug":872,"properties":1972,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":1975,"manageAffiliations":1984,"indexDatabases":1990,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":1973,"title":1974},{"VOID":875},{"EN":872},[1976,1980],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":1977,"label":1978,"description":1979,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":1981,"label":1982,"description":1983,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[1985],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":1986,"slug":28,"properties":1987,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":1989,"statistic":28},[],{"title":1988},{"EN":897},[],[1991,1998],{"id":901,"indexDatabase":1992,"url":907,"indexYears":908,"academicFieldIds":1997,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":1993,"label":1994,"description":1995,"key":781,"publicationTags":1996,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":1999,"url":926,"indexYears":28,"academicFieldIds":2004,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":2000,"label":2001,"description":2002,"key":923,"publicationTags":2003,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":2006,"volume":2008},{"VOID":2007},"226-237",{"VOID":2009},"58","2017-01-01",2017,[912,925],{"id":2014,"createTime":2015,"updateTime":2016,"relativeEntities":2017,"slug":2018,"properties":2019,"entityType":948,"verifyStatus":26,"verifyTime":2016,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":2026,"fullTextUrl":28,"authors":2027,"publicationType":995,"publisherRelationship":2056,"citationCount":28,"citationInfo":28,"publishDate":2097,"publishYear":2098,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":2099,"openAccess":28,"references":28,"isForceReanalyzing":1040},"018707ee-9702-4ba1-ac2a-9474cf748805","2023-11-25T20:44:42.422+00:00","2025-02-11T19:14:34.407+00:00",[],"Point-Mutations-in-Homology-Domain-II-Modify-the-Sensitivity-of-Rat-Nav1-8-Sodium-Channels-to-the-Pyrethroid-Insecticide-Cismethrin",{"title":2020,"references":2022,"doi":2024},{"EN":2021},"Point Mutations in Homology Domain II Modify the Sensitivity of Rat Nav1.8 Sodium Channels to the Pyrethroid Insecticide Cismethrin",{"VOID":2023},"Akopian, 1996, A tetrodotoxin-resistant voltage-gated sodium channel expressed in sensory neurons, Nature, 379, 257, 10.1038\u002F379257a0\nBloomquist, 1993, Toxicology, mode of action and target site-mediated resistance to insecticides acting on chloride channels, Comp. Biochem. Physiol., 106C, 301\nElliott M. Chemicals in insect control. In: Casida JE, Quistad GB, editors. Pyrethrum flowers: production, chemistry, toxicology, and uses. New York: Oxford University Press, 1995. p. 3–31.\nGinsburg, 1993, Differential sensitivity of tetrodotoxin-sensitive and tetrodotoxin-resistant sodium channels to the insecticide allethrin in rat dorsal root ganglion neurons, Brain Res., 627, 239, 10.1016\u002F0006-8993(93)90326-I\nGoldin, 1992, Maintenance of Xenopus laevis and oocyte injection, Meth. Enzymol., 207, 266, 10.1016\u002F0076-6879(92)07017-I\nGoldin, 2000, Nomenclature of voltage-gated sodium channels, Neuron, 28, 365, 10.1016\u002FS0896-6273(00)00116-1\nHelmuth, 1983, Poly(ethylene glycol) pretreatment reduces pyrethroid adsorption to glass surfaces, J. Agric. Food Chem., 31, 1127, 10.1021\u002Fjf00119a053\nIngles, 1996, Characterization of voltage-sensitive sodium channel gene coding sequences from insecticide-susceptible and knockdown-resistant house fly strains, Insect Biochem. Mol. Biol., 26, 319, 10.1016\u002F0965-1748(95)00093-3\nKnipple, 1994, Tight genetic linkage between the kdr insecticide resistance trait and a voltage-sensitive sodium channel gene in the house fly, Proc. Natl. Acad. Sci. USA, 91, 2483, 10.1073\u002Fpnas.91.7.2483\nLee, 1999, Mutations in the house fly Vssc1 sodium channel gene associated with super-kdr resistance abolish the pyrethroid sensitivity of Vssc1\u002FtipE sodium channels expressed in Xenopus oocytes, Insect Biochem. Mol. Biol., 29, 185, 10.1016\u002FS0965-1748(98)00122-2\nLee, 2001, The V410M mutation associated with pyrethroid resistance in Heliothis virescens reduces the pyrethroid sensitivity of house fly sodium channels expressed in Xenopus oocytes, Insect Biochem. Mol. Biol., 31, 19, 10.1016\u002FS0965-1748(00)00089-8\nLittleton, 2000, Ion channels and synaptic organization: analysis of the Drosophila genome, Neuron., 26, 35, 10.1016\u002FS0896-6273(00)81135-6\nMiyazaki, 1996, Cloning and sequencing of the para-type sodium channel gene from susceptible and kdr-resistant German cockroaches (Blattella germanica) and house fly (Musca domestica), Mol. Gen. Genet, 252, 61, 10.1007\u002FBF02173205\nNarahashi, 1992, Nerve membrane Na+ channels as targets of insecticides, Trends Pharmacol. Sci., 13, 236, 10.1016\u002F0165-6147(92)90075-H\nNarahashi, 1996, Neuronal ion channels as the target sites of insecticides, Pharmacol. Toxicol., 78, 1, 10.1111\u002Fj.1600-0773.1996.tb00234.x\nPlassart, 1996, Paramyotonia congenita: genotype to phenotype correlations in two families and report of a new mutation in the sodium channel gene, J. Neurol. Sci., 142, 126, 10.1016\u002F0022-510X(96)00173-6\nPlummer, 1999, Evolution and diversity of mammalian sodium channel genes, Genomics., 57, 323, 10.1006\u002Fgeno.1998.5735\nSangameswaran, 1996, Structure and function of a novel voltage-gated, tetrodotoxin-resistant sodium channel specific to sensory neurons, J. Biol. Chem., 271, 5953, 10.1074\u002Fjbc.271.11.5953\nSmith, 1997, The L1014F point mutation in the house fly Vssc1 sodium channel confers knockdown resistance to pyrethroids, Insect Biochem. Mol. Biol., 27, 807, 10.1016\u002FS0965-1748(97)00065-9\nSmith, 1998, Action of the pyrethroid insecticide cypermethrin on rat brain IIa sodium channels expressed in Xenopus oocytes, Neuro Toxicology, 19, 823\nSmith, 2001, Potent actions of the pyrethroid insecticides cismethrin and cypermethrin on rat tetrodotoxin-resistant peripheral nerve (SNS\u002FPN3) sodium channels expressed in Xenopus oocytes, Pestic. Biochem. Physiol., 70, 52, 10.1006\u002Fpest.2001.2538\nSoderlund DM. Mode of action of pyrethrins and pyrethroids. In: Casida JE, Quistad GB, editors. Pyrethrum flowers: production, chemistry, toxicology, and uses. New York: Oxford University Press, 1995. p. 217–33.\nSoderlund DM. Molecular mechanisms of insecticide resistance. In: Sjut V, editor. Molecular mechanisms of resistance to agrochemicals. Berlin: Springer, 1997. p. 21–56.\nSoderlund, 1999, Knockdown resistance to DDT and pyrethroids in the house fly (Diptera: Muscidae): from genetic trait to molecular mechanism, Ann Ent. Soc. Am., 92, 909, 10.1093\u002Faesa\u002F92.6.909\nSong, 1996, Differential effects of the pyrethroid tetramethrin on tetrodotoxin-sensitive and tetrodotoxin-resistant single sodium channels, Brain Res., 712, 258, 10.1016\u002F0006-8993(95)01449-7\nStühmer W. Electrical recordings from cloned sodium channels expressed in Xenopus oocytes. In: Agnew WS, Claudio T, Sigworth FJ, editors. Molecular biology of ion channels. San Diego: Academic Press, 1988. p. 271–6.\nTabarean, 1998, Potent modulation of tetrodotoxin-sensitive and tetrodotoxin-resistant sodium channels by the type II pyrethroid deltamethrin, J. Pharmacol. Exp. Ther., 284, 958\nTatebayashi, 1994, Differential mechanism of action of the pyrethroid tetramethrin on tetrodotoxin-sensitive and tetrodotoxin-resistant sodium channels, J. Pharmacol. Exp. Ther., 270, 595\nVais, 2000, A single amino acid change makes a rat neuronal sodium channel highly sensitive to pyrethroid insecticides, FEBS Lett., 470, 135, 10.1016\u002FS0014-5793(00)01305-3\nVais, 2000, Activation of Drosophila sodium channels promotes modification by deltamethrin: reductions in affinity caused by knockdown resistance mutations, J. Gen. Physiol., 115, 305, 10.1085\u002Fjgp.115.3.305\nWilliamson, 1993, Knockdown resistance (kdr) to DDT and pyrethroid insecticides maps to a sodium channel gene locus in the housefly (Musca domestica), Mol. Gen. Genet, 240, 17, 10.1007\u002FBF00276878\nWilliamson, 1996, Identification of mutations in the housefly para-type sodium channel gene associated with knockdown resistance (kdr) to pyrethroid insecticides, Mol. Gen. Genet, 252, 51, 10.1007\u002FBF02173204\nZhao, 2000, Functional and evolutionary consequences of pyrethroid resistance mutations in S6 transmembrane segments of a voltage-gated sodium channel, Biochem. Biophys. Res. Commun., 278, 516, 10.1006\u002Fbbrc.2000.3832",{"VOID":2025},"10.1016\u002Fs0161-813x(01)00065-1","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X01000651",[2028,2043],{"id":2029,"sortIndex":32,"researcher":28,"roles":2030,"affiliations":2031,"properties":2040,"displayName":2042,"givenName":28,"familyName":28},"eb206a38-0e4a-406f-81ac-56452d902726",[956],[2032],{"id":2033,"sortIndex":32,"affiliation":2034,"properties":28},"c30284dc-3c89-4c6c-bc2f-a1f6250ee471",{"id":2033,"createTime":28,"updateTime":28,"relativeEntities":2035,"slug":28,"properties":2036,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2039,"statistic":28},[],{"title":2037},{"VI":2038},"Department of Entomology, New York State Agricultural Experiment Station, Cornell University, Geneva, NY 14456, USA",[],{"title":2041},{"VI":2042},"David M Soderlund",{"id":2044,"sortIndex":40,"researcher":28,"roles":2045,"affiliations":2046,"properties":2053,"displayName":2055,"givenName":28,"familyName":28},"af3b9ea3-57d1-4db6-8a4b-64fae944271b",[956],[2047],{"id":2033,"sortIndex":32,"affiliation":2048,"properties":28},{"id":2033,"createTime":28,"updateTime":28,"relativeEntities":2049,"slug":28,"properties":2050,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2052,"statistic":28},[],{"title":2051},{"VI":2038},[],{"title":2054},{"VI":2055},"Si Hyeock Lee",{"url":2026,"publisher":2057,"properties":2092},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":2058,"slug":872,"properties":2059,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":2062,"manageAffiliations":2071,"indexDatabases":2077,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":2060,"title":2061},{"VOID":875},{"EN":872},[2063,2067],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":2064,"label":2065,"description":2066,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":2068,"label":2069,"description":2070,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[2072],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":2073,"slug":28,"properties":2074,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2076,"statistic":28},[],{"title":2075},{"EN":897},[],[2078,2085],{"id":901,"indexDatabase":2079,"url":907,"indexYears":908,"academicFieldIds":2084,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":2080,"label":2081,"description":2082,"key":781,"publicationTags":2083,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":2086,"url":926,"indexYears":28,"academicFieldIds":2091,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":2087,"label":2088,"description":2089,"key":923,"publicationTags":2090,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":2093,"volume":2095},{"VOID":2094},"755-765",{"VOID":2096},"22","2001-12-01",2001,[912,925],{"id":2101,"createTime":2102,"updateTime":2103,"relativeEntities":2104,"slug":2105,"properties":2106,"entityType":948,"verifyStatus":26,"verifyTime":2113,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":2114,"fullTextUrl":28,"authors":2115,"publicationType":995,"publisherRelationship":2263,"citationCount":28,"citationInfo":28,"publishDate":1037,"publishYear":1038,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":2303,"openAccess":28,"references":28,"isForceReanalyzing":1040},"018fcd8b-9d60-472f-a022-969a130fd07e","2024-01-30T08:27:42.714+00:00","2025-01-22T17:53:47.484+00:00",[],"Histopathological-evidence-that-diethylene-glycol-produces-kidney-and-nervous-system-damage-in-rats",{"title":2107,"references":2109,"doi":2111},{"EN":2108},"Histopathological evidence that diethylene glycol produces kidney and nervous system damage in rats",{"VOID":2110},"Alfred, 2005, Delayed neurologic sequelae resulting from epidemic diethylene glycol poisoning, Clin. Toxicol., 43, 155, 10.1081\u002FCLT-57875\nArmenta, 2010, Sensitive and rapid method for amino acid quantitation in malaria biological samples using AccQ.Tag ultra performance liquid chromatography-electrospray ionization-MS\u002FMS with multiple reaction monitoring, Anal. Chem., 82, 548, 10.1021\u002Fac901790q\nBesenhofer, 2012, Aluminum citrate prevents renal injury from calcium oxalate crystal deposition, J. Am. Soc. Nephrol., 23, 2024, 10.1681\u002FASN.2012040357\nBesenhofer, 2010, Inhibition of metabolism of diethylene glycol prevents target organ toxicity in rats, Toxicol. Sci., 117, 25, 10.1093\u002Ftoxsci\u002Fkfq167\nBesenhofer, 2011, Role of tissue metabolite accumulation in the renal toxicity of diethylene glycol, Toxicol. Sci., 123, 374, 10.1093\u002Ftoxsci\u002Fkfr197\nBolon, 2013, STP position paper: recommended practices for sampling and processing the nervous system (brain, spinal cord, nerve, and eye) during nonclinical general toxicity studies, Toxicol. Pathol., 41, 1028, 10.1177\u002F0192623312474865\nConklin, 2014, Long-term renal and neurologic outcomes among survivors of diethylene glycol poisoning, JAMA Intern. Med., 174, 912, 10.1001\u002Fjamainternmed.2014.344\nCooper, 2001, Role of glutamine in cerebral nitrogen metabolism and ammonia neurotoxicity, Ment. Retard. Dev. Disabil. Res. Rev., 7, 280, 10.1002\u002Fmrdd.1039\nCorley, 2008, Dosimetry considerations in the enhanced sensitivity of male Wistar rats to chronic ethylene glycol-induced nephrotoxicity, Toxicol. Appl. Pharmacol., 228, 165, 10.1016\u002Fj.taap.2007.11.024\nDahchour, 2000, Effects of ethanol on extracellular amino acid levels in high-and low-alcohol sensitive rats: a microdialysis study, Alcohol Alcohol. (Oxf., Oxfs.), 35, 548, 10.1093\u002Falcalc\u002F35.6.548\nGonzalez-cuyar, 2012, NIH Public Access, 11, 455\nGoulart, 2020, Analysis of diglycolic acid after mass poisoning by diethylene glycol, J. Anal. Toxicol., 1\nGupta, 2017, Basal ganglion hemorrhage as delayed complication of diethylene glycol ingestion, Am. J. Forensic Med. Pathol., 38, 39, 10.1097\u002FPAF.0000000000000295\nHalpin, 2014, Ammonia mediates methamphetamine-induced increases in glutamate and excitotoxicity, Neuropsychopharmacol.: Off. Publ. Am. Coll. Neuropsychopharmacol., 39, 1031, 10.1038\u002Fnpp.2013.306\nHanif, 1995, Fatal renal failure caused by diethylene glycol in paracetamol elixir – the Bangladesh epidemic, BMJ, 311, 88, 10.1136\u002Fbmj.311.6997.88\nHasbani, 2005, Encephalopathy and peripheral neuropathy following diethylene glycol ingestion, Neurology, 64, 1273, 10.1212\u002F01.WNL.0000156804.07265.1A\nImam, 2014, Neurological manifestation of recreational fatal and near-fatal diethylene glycol poisonings: case series and review of literature, Medicine, 93, 10.1097\u002FMD.0000000000000062\nJackson, 2015, Preservation of forelimb function by UPF1 gene therapy in a rat model of TDP-43-induced motor paralysis, Gene Ther., 22, 20, 10.1038\u002Fgt.2014.101\nJamison, 2021, Neurotoxic effects of nephrotoxic compound diethylene glycol, Clin. Toxicol., 59, 810, 10.1080\u002F15563650.2021.1874403\nJamison, 2021, Diethylene glycol produces nephrotoxic and neurotoxic effects in female rats, Clin. Toxicol., 10.1080\u002F15563650.2021.1874403\nLandry, 2011, Diglycolic acid is the nephrotoxic metabolite in diethylene glycol poisoning inducing necrosis in human proximal tubule cells in vitro, Toxicol. Sci., 124, 35, 10.1093\u002Ftoxsci\u002Fkfr204\nLandry, 2013, Diglycolic acid inhibits succinate dehydrogenase activity in human proximal tubule cells leading to mitochondrial dysfunction and cell death, Toxicol. Lett., 221, 176, 10.1016\u002Fj.toxlet.2013.06.231\nLandry, 2015, Diethylene glycol-induced toxicities show marked threshold dose response in rats, Toxicol. Appl. Pharm., 282, 244, 10.1016\u002Fj.taap.2014.12.010\nMarraffa, 2008, Diethylene glycol: widely used solvent presents serious poisoning potential, J. Emerg. Med., 35, 401, 10.1016\u002Fj.jemermed.2007.06.025\nMcMartin, 2009, Are calcium oxalate crystals involved in the mechanism of acute renal failure in ethylene glycol poisoning?, Clin. Toxicol. (Phila. Pa.), 47, 859, 10.3109\u002F15563650903344793\nNam, 2015, Elevated baseline serum glutamate as a pharmacometabolomic biomarker for acamprosate treatment outcome in alcohol-dependent subjects, Transl. Psychiatry, 5, 10.1038\u002Ftp.2015.120\nO'Brien, 1998, Epidemic of pediatric deaths from acute renal failure caused by diethylene glycol poisoning, JAMA, 279, 1175, 10.1001\u002Fjama.279.15.1175\nOkame, 2015, Comparison of amino acid profiles between rats subjected to forced running and voluntary running exercises, J. Vet. Med. Sci., 77, 661, 10.1292\u002Fjvms.15-0020\n1992, Laboratory methods in histotechnology\nReddy, 2010, Delayed neurological sequelae from ethylene glycol, diethylene glycol and methanol poisonings, Clin. Toxicol., 48, 967, 10.3109\u002F15563650.2010.532803\nRentz, 2008, Outbreak of acute renal failure in Panama in 2006: a case-control study, Bull. World Health Organ, 86, 749, 10.2471\u002FBLT.07.049965\nRitter, 1992, Vol. 8\nRobinson, 2017, In-vivo evidence of nephrotoxicity and altered hepatic function in rats following administration of diglycolic acid, a metabolite of diethylene glycol, Clin. Toxicol., 55, 196, 10.1080\u002F15563650.2016.1271128\nRollins, 2002, Fulminant ascending paralysis as a delayed sequela of diethylene glycol (Sterno) ingestion, Neurology, 59, 1460, 10.1212\u002F01.WNL.0000032498.65787.8D\nSchep, 2009, Diethylene glycol poisoning, Clin. Toxicol., 47, 525, 10.1080\u002F15563650903086444\nSchier, 2009, Medication-associated diethylene glycol mass poisoning: A review and discussion on the origin of contamination, J. Public Healthy Policy, 127, 10.1057\u002Fjphp.2009.2\nSocha, 2019, Amino acid profiling as a method of discovering biomarkers for diagnosis of neurodegenerative diseases, Amino Acids, 51, 367, 10.1007\u002Fs00726-019-02705-6\nSosa, 2014, Clinical, laboratory, diagnostic, and histopathologic features of diethylene glycol poisoning-Panama, 2006, Ann. Emerg. Med., 64, 38, 10.1016\u002Fj.annemergmed.2013.12.011\nSprando, 2017, 28-day repeated dose response study of diglycolic acid: renal and hepatic effects, Ferguson M. Food Chem. Toxicol., 106, 558, 10.1016\u002Fj.fct.2017.03.047\nTakahashi, 1991, Inhibition of brain glutamine accumulation prevents cerebral edema in hyperammonemic rats, Am. J. Physiol., 261, H825\nTakahashi, 1992, Restoration of cerebrovascular CO2 responsivity by glutamine synthesis inhibition in hyperammonemic rats, Circ. Res., 71, 1220, 10.1161\u002F01.RES.71.5.1220\nWiener, 1989, Metabolism of diethylene glycol in male rats, Biochem. Pharmacol., 38, 539, 10.1016\u002F0006-2952(89)90396-1",{"VOID":2112},"10.1016\u002Fj.neuro.2022.05.015","2025-01-22T17:53:47.483+00:00","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X22000870",[2116,2131,2146,2159,2172,2185,2198,2211,2224,2237,2250],{"id":2117,"sortIndex":32,"researcher":28,"roles":2118,"affiliations":2119,"properties":2128,"displayName":2130,"givenName":28,"familyName":28},"980c06b9-b534-415e-8d82-58e32ed4a753",[956],[2120],{"id":2121,"sortIndex":32,"affiliation":2122,"properties":28},"5156f886-55c2-4883-aead-8870b7698f76",{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2123,"slug":28,"properties":2124,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2127,"statistic":28},[],{"title":2125},{"VI":2126},"Department of Pharmacology, Toxicology and Neuroscience, LSU Health Sciences Center, Shreveport, LA, USA",[],{"title":2129},{"VI":2130},"N. Jamison Courtney",{"id":2132,"sortIndex":40,"researcher":28,"roles":2133,"affiliations":2134,"properties":2143,"displayName":2145,"givenName":28,"familyName":28},"2d125c55-b0f6-4d8c-8bcd-4ef0acbc48e0",[956],[2135],{"id":2136,"sortIndex":32,"affiliation":2137,"properties":28},"3b06d508-a70a-40f0-b494-85acd5b16bd3",{"id":2136,"createTime":28,"updateTime":28,"relativeEntities":2138,"slug":28,"properties":2139,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2142,"statistic":28},[],{"title":2140},{"VI":2141},"Department of Pathology, LSU Health Sciences Center, Shreveport, LA, USA",[],{"title":2144},{"VI":2145},"K. Cuevas-Ocampo Areli",{"id":2147,"sortIndex":123,"researcher":28,"roles":2148,"affiliations":2149,"properties":2156,"displayName":2158,"givenName":28,"familyName":28},"00805ddd-d471-49ee-9580-4b37c50e9db5",[956],[2150],{"id":2136,"sortIndex":32,"affiliation":2151,"properties":28},{"id":2136,"createTime":28,"updateTime":28,"relativeEntities":2152,"slug":28,"properties":2153,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2155,"statistic":28},[],{"title":2154},{"VI":2141},[],{"title":2157},{"VI":2158},"B. Flowers Ashley",{"id":2160,"sortIndex":42,"researcher":28,"roles":2161,"affiliations":2162,"properties":2169,"displayName":2171,"givenName":28,"familyName":28},"311f4d20-91ab-4e77-a57c-df85532570ee",[956],[2163],{"id":2121,"sortIndex":32,"affiliation":2164,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2165,"slug":28,"properties":2166,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2168,"statistic":28},[],{"title":2167},{"VI":2126},[],{"title":2170},{"VI":2171},"W. Nam Hyung",{"id":2173,"sortIndex":45,"researcher":28,"roles":2174,"affiliations":2175,"properties":2182,"displayName":2184,"givenName":28,"familyName":28},"8d8a30ac-5f29-4ffe-802f-c396de9cef8b",[956],[2176],{"id":2121,"sortIndex":32,"affiliation":2177,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2178,"slug":28,"properties":2179,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2181,"statistic":28},[],{"title":2180},{"VI":2126},[],{"title":2183},{"VI":2184},"D. Dayton Robert",{"id":2186,"sortIndex":46,"researcher":28,"roles":2187,"affiliations":2188,"properties":2195,"displayName":2197,"givenName":28,"familyName":28},"bf499f47-a2a6-4a8b-8579-06fd00cefb33",[956],[2189],{"id":2121,"sortIndex":32,"affiliation":2190,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2191,"slug":28,"properties":2192,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2194,"statistic":28},[],{"title":2193},{"VI":2126},[],{"title":2196},{"VI":2197},"P. McKinney Mary",{"id":2199,"sortIndex":48,"researcher":28,"roles":2200,"affiliations":2201,"properties":2208,"displayName":2210,"givenName":28,"familyName":28},"7d7f9b96-a777-4e74-a393-adebc70ff63d",[956],[2202],{"id":2121,"sortIndex":32,"affiliation":2203,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2204,"slug":28,"properties":2205,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2207,"statistic":28},[],{"title":2206},{"VI":2126},[],{"title":2209},{"VI":2210},"G. Mitchell Hannah",{"id":2212,"sortIndex":49,"researcher":28,"roles":2213,"affiliations":2214,"properties":2221,"displayName":2223,"givenName":28,"familyName":28},"a9cfa77a-c532-4c4b-b52c-06393bc6822d",[956],[2215],{"id":2121,"sortIndex":32,"affiliation":2216,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2217,"slug":28,"properties":2218,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2220,"statistic":28},[],{"title":2219},{"VI":2126},[],{"title":2222},{"VI":2223},"S. Fitzgerald Joseph",{"id":2225,"sortIndex":357,"researcher":28,"roles":2226,"affiliations":2227,"properties":2234,"displayName":2236,"givenName":28,"familyName":28},"d96e1221-c999-408e-bf06-57cab6257a63",[956],[2228],{"id":2121,"sortIndex":32,"affiliation":2229,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2230,"slug":28,"properties":2231,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2233,"statistic":28},[],{"title":2232},{"VI":2126},[],{"title":2235},{"VI":2236},"E. Steib Mattie",{"id":2238,"sortIndex":145,"researcher":28,"roles":2239,"affiliations":2240,"properties":2247,"displayName":2249,"givenName":28,"familyName":28},"500ddcbb-45cf-4d3f-83fe-4eecab1ce014",[956],[2241],{"id":2121,"sortIndex":32,"affiliation":2242,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2243,"slug":28,"properties":2244,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2246,"statistic":28},[],{"title":2245},{"VI":2126},[],{"title":2248},{"VI":2249},"R. Toups Colton",{"id":2251,"sortIndex":205,"researcher":28,"roles":2252,"affiliations":2253,"properties":2260,"displayName":2262,"givenName":28,"familyName":28},"838341ce-2c1d-4e7f-99a1-e15a908d3049",[956],[2254],{"id":2121,"sortIndex":32,"affiliation":2255,"properties":28},{"id":2121,"createTime":28,"updateTime":28,"relativeEntities":2256,"slug":28,"properties":2257,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2259,"statistic":28},[],{"title":2258},{"VI":2126},[],{"title":2261},{"VI":2262},"E. McMartin Kenneth",{"url":2114,"publisher":2264,"properties":2299},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":2265,"slug":872,"properties":2266,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":2269,"manageAffiliations":2278,"indexDatabases":2284,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":2267,"title":2268},{"VOID":875},{"EN":872},[2270,2274],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":2271,"label":2272,"description":2273,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":2275,"label":2276,"description":2277,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[2279],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":2280,"slug":28,"properties":2281,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2283,"statistic":28},[],{"title":2282},{"EN":897},[],[2285,2292],{"id":901,"indexDatabase":2286,"url":907,"indexYears":908,"academicFieldIds":2291,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":2287,"label":2288,"description":2289,"key":781,"publicationTags":2290,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":2293,"url":926,"indexYears":28,"academicFieldIds":2298,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":2294,"label":2295,"description":2296,"key":923,"publicationTags":2297,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":2300,"volume":2302},{"VOID":2301},"200-210",{"VOID":1036},[912,925],{"id":2305,"createTime":2306,"updateTime":2307,"relativeEntities":2308,"slug":2309,"properties":2310,"entityType":948,"verifyStatus":26,"verifyTime":2307,"verifyNote":950,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":2317,"fullTextUrl":28,"authors":2318,"publicationType":995,"publisherRelationship":2376,"citationCount":28,"citationInfo":28,"publishDate":2417,"publishYear":1791,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":2418,"openAccess":28,"references":28,"isForceReanalyzing":1040},"019c97b5-766c-4dfa-a425-ccb486cf1e9d","2024-01-10T06:24:59.814+00:00","2025-01-29T10:13:43.854+00:00",[],"Neuroprotective-offerings-by-agmatine",{"title":2311,"references":2313,"doi":2315},{"EN":2312},"Neuroprotective offerings by agmatine",{"VOID":2314},"Abe, 2000, Agmatine suppresses nitric oxide production in microglia, Brain Res., 872, 141, 10.1016\u002FS0006-8993(00)02517-8\nAbe, 2003, Agmatine induces glutamate release and cell death in cultured rat cerebellar granule neurons, Brain Res., 990, 165, 10.1016\u002FS0006-8993(03)03454-1\nAhn, 2011, Effects of agmatine on hypoxic microglia and activity of nitric oxide synthase, Brain Res., 1373, 48, 10.1016\u002Fj.brainres.2010.12.002\nAhn, 2012, Protective effects of agmatine on lipopolysaccharide-injured microglia and inducible nitric oxide synthase activity, Life Sci., 91, 1345, 10.1016\u002Fj.lfs.2012.10.010\nAhn, 2015, Effects of agmatine on blood-brain barrier stabilization assessed by permeability MRI in a rat model of transient cerebral, AJNR Am. J. Neuroradiol., 36, 283, 10.3174\u002Fajnr.A4113\nAuguet, 1995, Selective inhibition of inducible nitric oxide synthase by agmatine, Jpn. J. Pharmacol., 69, 285, 10.1254\u002Fjjp.69.285\nBéjot, 2012, The deleterious effect of admission hyperglycemia on survival and functional outcome in patients with intracerebral hemorrhage, Stroke., 43, 243, 10.1161\u002FSTROKEAHA.111.632950\nBenítez, 2018, Metabolic strategies for the degradation of the neuromodulator agmatine in mammals, Metabolism., 81, 35, 10.1016\u002Fj.metabol.2017.11.005\nBennet, 2014, Effects of agmatine and resveratrol on RGC-5 cellbehavior under light stimulation, Environ. Toxicol. Pharmacol., 38, 84, 10.1016\u002Fj.etap.2014.05.006\nBennet, 2013, Light-induced anatomical alterations in retinal cells, Anal. Biochem., 436, 84, 10.1016\u002Fj.ab.2013.01.025\nBerenholz, 2005, Agmatine treatment and vein graft reconstruction enhance recovery after experimental facial nerve injury, J. Peripheral Nerv. Sys., 10, 319, 10.1111\u002Fj.1085-9489.2005.10310.x\nBinnetoglu, 2019, Neuroprotective effects of agmatine in antineoplastic drugs induced neurotoxicity: in vitro study, Life Sci., 10.1016\u002Fj.lfs.2019.02.018\nBokara, 2011, Retroviral expression of arginine decarboxylase attenuates oxidative burden in mouse cortical neural stem cells, Stem Cells Dev., 20, 527, 10.1089\u002Fscd.2010.0312\nBokara, 2016, Transfection of arginine decarboxylase gene increases the neuronal differentiation of neural progenitor cells, Stem Cell Res., 17, 256, 10.1016\u002Fj.scr.2016.08.009\nBroad, 2007, Toll-like receptor interactions: tolerance of MyD88-dependent cytokines but enhancement of MyD88-independent interferon-beta production, Immunology., 120, 103, 10.1111\u002Fj.1365-2567.2006.02485.x\nChai, 2016, Agmatine reduces lipopolysaccharide-mediated oxidant response via activating PI3K\u002FAkt pathway and up-regulating Nrf2 and HO-1 expression in macrophages, PLoS One, 11, 10.1371\u002Fjournal.pone.0163634\nChao, 1995, Interleukin-1 and tumor necrosis factor-alpha synergistically mediate neurotoxicity: involvement of nitric oxide and of N-methyl-D-aspartate receptors, Brain Behav. Immun., 9, 355, 10.1006\u002Fbrbi.1995.1033\nConway, 2001, Molecular mechanisms of blood vessel growth, Cardiovasc Res., 49, 507, 10.1016\u002FS0008-6363(00)00281-9\nCui, 2012, The neuroprotective effect of agmatine after focal cerebral ischemia in diabetic rats, J.Neurosurg. Anesthesiol., 24, 39, 10.1097\u002FANA.0b013e318235af18\nDastan, 2009, Agmatine as retinal protection from ischemia–reperfusion injury in guinea pigs, Jpn. J. Ophthalmol., 53, 219, 10.1007\u002Fs10384-009-0660-0\nDejanovic, 2018, Effects of agmatine on chlorpromazine-induced neuronal injury in rat, Acta Vet. Brno., 87, 145, 10.2754\u002Favb201887020145\nDemady, 2001, Agmatine enhances the NADPH oxidase activity of neuronal NO synthase and leads to oxidative inactivation of the enzyme, Mol. Pharmacol., 59, 24, 10.1124\u002Fmol.59.1.24\nDixit, 2018, Neuroprotective effect of agmatine in mouse spinal cord injury model: modulation by imidazoline receptors, J. Nat. Sci. Biol. Med., 9, 115, 10.4103\u002Fjnsbm.JNSBM_239_17\nFairbanks, 2001, Pre-treatment with antisera raised against agmatine sensitizes mice to plasticity-mediated events, Soc. Neurosci. Abstr., 27, 465\nFeng, 2002, Agmatine suppresses nitric oxide production and attenuates hypoxic-ischemic brain injury in neonatal rats, Pediatr. Res., 52, 606, 10.1203\u002F00006450-200210000-00023\nFitch, 1999, Cellular and molecular mechanisms of glial scarring and progressive cavitation: in vivo and in vitro analysis of inflammation-induced secondary injury after CNS trauma, J. Neurosci., 19, 8182, 10.1523\u002FJNEUROSCI.19-19-08182.1999\nFreitas, 2015, Agmatine induces Nrf2 and protects against corticosterone effects in hippocampal neuronal cell line, Mol. Neurobiol., 51, 1504, 10.1007\u002Fs12035-014-8827-1\nFrodl, 2013, How does the brain deal with cumulative stress? A review with focus on developmental stress, HPA axis function and hippocampal structure in humans, Neurobiol. Dis., 52, 24, 10.1016\u002Fj.nbd.2012.03.012\nFujimura, 1999, Early appearance of activated matrix metalloproteinase-9 and blood-brain barrier disruption in mice after focal cerebral ischemia and reperfusion, Brain Res., 842, 92, 10.1016\u002FS0006-8993(99)01843-0\nGalea, 1996, Inhibition of mammalian nitric oxide synthases by agmatine, an endogenous polyamine formed by decarboxylation of arginine, Biochem. J., 316, 247, 10.1042\u002Fbj3160247\nGiaever, 1993, A morphological biosensor for mammalian cells, Nature., 366, 591, 10.1038\u002F366591a0\nGilad, 1992, Polyamines in neurotrauma, Biochem. Pharmacol., 44, 401, 10.1016\u002F0006-2952(92)90428-L\nGilad, 2000, Accelerated functional recovery and neuroprotection by agmatine after spinal cord ischemia in rats, Neurosci. Lett., 296, 97, 10.1016\u002FS0304-3940(00)01625-6\nGilad, 2014, Long-term (5 years), high daily dosage of dietary agmatine- evidence of safety: a case report, J. Med. Food, 17, 1256, 10.1089\u002Fjmf.2014.0026\nGilad, 1996, Arginine and ornithine decarboxylation in rodent brain: coincidental changes during development and after ischemia, Neurosci. Lett., 216, 33, 10.1016\u002F0304-3940(96)12996-7\nGilad, 1996, Agmatine treatment is neuroprotective in rodent brain injury models, Life Sci., 58, PL41\nGilad G.M., Gilad V.H., 1997. Agmatine for the treatment of neurotrauma and neurodegenerative diseases. US Patent 677349, Oct. 14, 1997.\nGilad G.M., Gilad V.H., 2000. Agmatine and polyaminoguanidine-bound heterocyclic compounds for neurotrauma and neurodegenerative diseases. US Patent 6114392, Sep. 5, 2000.\nGreenberg, 2005, From angiogenesis to neuropathology, Nature., 438, 954, 10.1038\u002Fnature04481\nHan, 2015, Agmatine protects Müller cells from high-concentration glucose-induced cell damage via N-methyl-D-aspartic acid receptor inhibition, Mol Med Rep., 12, 10.3892\u002Fmmr.2015.3540\nHeo, 1999, Matrix metalloproteinases increase very early during experimental focal cerebral ischemia, J. Cereb. Blood Flow Metab., 19, 624, 10.1097\u002F00004647-199906000-00005\nHong, 2003, Quantitative analysis of agmatine by HPLC in ischemic brain, Korean J Anat., 36, 257\nHong, 2007, Agmatine protects retinal ganglion cells from hypoxia-induced apoptosis in transformed rat retinal ganglion cell line, BMC. Neurosci., 8, 81, 10.1186\u002F1471-2202-8-81\nHong, 2008, Agmatine inhibits hypoxia-induced TNF-α release from cultured retinal ganglion cells, Biocell, 32, 201, 10.32604\u002Fbiocell.2008.32.201\nHong, 2009, Agmatine protects cultured retinal ganglion cells from tumor necrosis factor-alpha-induced apoptosis, Life Sci., 84, 28, 10.1016\u002Fj.lfs.2008.10.006\nHong, 2012, Retinal protective effects of topically administered agmatine on ischemic ocular injury caused by transient occlusion of the ophthalmic artery, Braz. J. Med. Biol. Res., 45, 212, 10.1590\u002FS0100-879X2012007500020\nHong, 2014, Retroviral expression of human arginine decarboxylase reduces oxidative stress injury in mouse cortical astrocytes, BMC Neurosci., 15, 99, 10.1186\u002F1471-2202-15-99\nHuang, 2013, Neuroprotective effect of agmatine in rats with transient cerebral ischemia using MR imaging and histopathologic evaluation, Magnetic Resonance Imaging., 31, 1174, 10.1016\u002Fj.mri.2013.03.026\nIadecola, 1997, Bright and dark sides of nitric oxide in ischemic brain injury, Trends Neurosci., 20, 132, 10.1016\u002FS0166-2236(96)10074-6\nIadecola, 2011, The immunology of stroke: from mechanisms to translation, Nat. Med., 17, 796, 10.1038\u002Fnm.2399\nIadecola, 1995, Inducible nitric oxide synthase gene expression in brain following cerebral ischemia, J. Cereb. Blood Flow Metab., 15, 378, 10.1038\u002Fjcbfm.1995.47\nIizuka, 2008, Agmatine pretreatment protects retinal ganglion cells (RGC-5 cell line) from oxidative stress in vitro, Biocell, 32, 245, 10.32604\u002Fbiocell.2008.32.245\nIizuka, 2010, Protective mechanism of agmatine pretreatment on RGC-5 cells injured by oxidative stress, Braz. J. Med. Biol. Res., 43, 356, 10.1590\u002FS0100-879X2010007500018\nJohnson, 2008, The Nrf2-ARE pathway: an indicator and modulator of oxidative stress in neurodegeneration, Ann. N. Y. Acad. Sci., 1147, 61, 10.1196\u002Fannals.1427.036\nJung, 2010, Endogenous agmatine inhibits cerebral vascular matrix metalloproteinases expression by regulating activating transcription factor 3 and endothelial nitric oxide synthesis, Curr. Neurovasc. Res., 7, 201, 10.2174\u002F156720210792231804\nJung, 2013, Agmatine promotes the migration of murine brain endothelial cells via multiple signaling pathways, Life Sci., 92, 42, 10.1016\u002Fj.lfs.2012.10.018\nKeynan, 2010, Safety and efficacy of dietary agmatine sulfate in lumbar disc-associated radiculopathy. An open-label, dose-escalating study followed by a randomized, double-blind, placebo-controlled trial, Pain Medicine., 11, 356, 10.1111\u002Fj.1526-4637.2010.00808.x\nKim, 2004, Agmatine reduces infarct area in a mouse model of transient focal cerebral ischemia and protects cultured neurons from ischemia-like injury, Exp. Neurol., 189, 122, 10.1016\u002Fj.expneurol.2004.05.029\nKim, 2006, Protective effect of agmatine on a reperfusion model after transient cerebral ischemia: temporal evolution on perfusion MR imaging and histopathologic findings, Am. J. Neuroradiol., 27, 780\nKim, 2006, HMGB1, a novel cytokine-like mediator linking acute neuronal death and delayed neuroinflammation in the postischemic brain, J. Neurosci., 26, 6413, 10.1523\u002FJNEUROSCI.3815-05.2006\nKim, 2008, The effect of agmatine on expression of MMP2 and MMP9 in cerebral ischemia, Korean J. Anat., 41, 97\nKim, 2010, Agmatine attenuates brain edema through reducing the expression of aquaporin-1 after cerebral ischemia, J. Cereb. Blood Flow Metab., 30, 943, 10.1038\u002Fjcbfm.2009.260\nKim, 2011, Agmatine reduced collagen scar area accompanied with surface righting reflex recovery after complete transection spinal cord injury, Spine., 36, 2130, 10.1097\u002FBRS.0b013e318205e3f7\nKim, 2015, Agmatine attenuates brain edema and apoptotic cell death after traumatic brain injury, Korean Med. Sci., 30, 943, 10.3346\u002Fjkms.2015.30.7.943\nKim, 2016, The anti-inflammatory effects of agmatine on transient focal cerebral ischemia in diabetic rats, J. Neurosurg. Anesthesiol., 28, 203, 10.1097\u002FANA.0000000000000195\nKim, 2017, Endogenous agmatine induced by ischemic preconditioning regulates ischemic tolerance following cerebral ischemia, Exp. Neurobiol., 26, 380, 10.5607\u002Fen.2017.26.6.380\nKim, 2017, Agmatine modulates the phenotype of macrophage acute phase after spinal cord injury in rats, Exp. Neurobiol., 26, 278, 10.5607\u002Fen.2017.26.5.278\nKotil, 2006, Investigation of the dose-dependent neuroprotective effects of agmatine in experimental spinal cord injury: a prospective randomized and placebo-control trial, J. Neurosurg. Spine., 4, 392, 10.3171\u002Fspi.2006.4.5.392\nKuo, 2007, Resuscitation from experimental traumatic brain injury by agmatine therapy, Resuscitation., 75, 506, 10.1016\u002Fj.resuscitation.2007.05.011\nKuo, 2011, Agmatine-promoted angiogenesis, neurogenesis, and inhibition of gliosis reduced traumatic brain injury in rats, J. Trauma., 71, E87\nLaing, 2011, ADP-ribosylation of arginine, Amino Acids., 41, 257, 10.1007\u002Fs00726-010-0676-2\nLazarovici, 2006, Cross talk between the cardiovascular and nervous systems: neurotrophic effects of vascular endothelial growth factor (VEGF) and angiogenic effects of nerve growth factor (NGF)-implications in drug development, Curr. Pharm. Des., 12, 2609, 10.2174\u002F138161206777698738\nLee, 2002, Stress and depression: possible links to neuron death in the hippocampus, Bipolar Disord., 4, 117, 10.1034\u002Fj.1399-5618.2002.01144.x\nLee, 2009, Neuroprotective effects of agmatine on oxygen-glucose deprived primary-cultured astrocytes and nuclear translocation of nuclear factor-kappa, Behav. Brain Res., 1281, 64, 10.1016\u002Fj.brainres.2009.05.046\nLeonard, 2012, Mechanistic explanations how cell mediated immune activation, inflammation and oxidative and nitrosative stress pathways and their sequels and concomitants play a role in the pathophysiology of unipolar depression, Neurosci. Biobehav. Rev., 36, 764, 10.1016\u002Fj.neubiorev.2011.12.005\nLi, 2006, Involvement of phosphatidylcholine-selective phospholipase C in activation of mitogen activated protein kinase pathways in imidazoline receptor antisera-selected protein, J. Cell. Biochem., 98, 1615, 10.1002\u002Fjcb.20806\nMarquez, 2002, Post-stress recovery of pituitary-adrenal hormones and glucose, but not the response during exposure to the stressor, is a marker of stress intensity in highly stressful situations, Brain Res., 926, 181, 10.1016\u002FS0006-8993(01)03112-2\nMarsh, 2009, Toll-like receptor signaling in endogenous neuroprotection and stroke, Neuroscience., 158, 1007, 10.1016\u002Fj.neuroscience.2008.07.067\nMarx, 1995, Agmatine and spermidine reduce collagen accumulation in kidneys of diabetic db\u002Fdb mice, Nephron., 69, 155, 10.1159\u002F000188432\nMoon, 2010, Recombinant hexahistidine arginine decarboxylase (hisADC) induced endogenous agmatine synthesis during stress, Mol. Cell Biochem., 345, 53, 10.1007\u002Fs11010-010-0559-6\nMorrissey, 1997, Agmatine activation of nitric oxide synthase in endothelial cells, Proc. Assoc. Am. Physicians., 109, 51\nMoss, 1983, Amino acid-specific ADP-ribosylation: stability of the reaction products of an NAD:arginine ADP-ribosyltransferase to hydroxylamine and hydroxide, J. Biol. Chem., 258, 6466, 10.1016\u002FS0021-9258(18)32434-7\nMuhammad, 2008, The HMGB1 receptor RAGE mediates ischemic brain damage, J. Neurosci., 28, 10.1523\u002FJNEUROSCI.2435-08.2008\nMun, 2009, Agmatine attenuates nitric oxide synthesis and protects ER-structure from global cerebral ischemia in rat hippocampus, Korean J. Anat., 42, 149\nMun, 2010, Agmatine reduces nitric oxide synthase expression and peroxynitrite formation in the cerebral cortex in a rat model of transient global cerebral ischemia, Neural Regen Res., 5, 1773\nMun, 2010, Regulation of endothelial nitric oxide synthase by agmatine after transient global cerebral ischemia in rat brain, Anat Cell Biol., 43, 230, 10.5115\u002Facb.2010.43.3.230\nNakka, 2010, Endoplasmic reticulum stress plays critical role in brain damage after cerebral ischemia\u002Freperfusion in rats, Neurotox Res., 17, 189, 10.1007\u002Fs12640-009-9110-5\nOble, 2004, A comparison of thyroxine- and polyamine-mediated enhancement of rat facial regeneration, Exp. Neurol., 189, 105, 10.1016\u002Fj.expneurol.2004.05.024\nOlmos, 1999, Protection by imidazol(ine) drugs and agmatine of glutamate-induced neurotoxicity in cultured cerebellar granule cells through blockade of NMDA receptor, Br. J. Pharmacol., 127, 1317, 10.1038\u002Fsj.bjp.0702679\nOtake, 1998, Regional localization of agmatine in the rat brain: an immunocytochemical study, Brain Res., 787, 1, 10.1016\u002FS0006-8993(97)01200-6\nOuyang, 2012, ER-mitochondria crosstalk during cerebral ischemia: molecular chaperones and ER-mitochondrial calcium transfer, Int. J. Cell Biol., 10.1155\u002F2012\u002F493934\nPark, 2013, The multifaceted effects of agmatine on functional recovery after spinal cord injury through modulations of BMP-2\u002F4\u002F7 expressions in neurons and glial cells, PLoS ONE, 8, 10.1371\u002Fjournal.pone.0053911\nPfeiffer, 1981, Insulin-like effects of agmatine in vitro and in vivo, Hoppe Seylers Z Physiol Chem., 362, 1331, 10.1515\u002Fbchm2.1981.362.2.1331\nPiletz, 2003, Agmatine crosses the blood–brain barrier, Ann. N. Y. Acad. Sci., 1009, 64, 10.1196\u002Fannals.1304.007\nQiu, 2008, Early release of HMGB-1 from neurons after the onset of brain ischemia, J Cereb Blood Flow Metab., 28, 927, 10.1038\u002Fsj.jcbfm.9600582\nQiu, 2006, Neuroprotective effects of receptor imidazoline 2 and its endogenous ligand agmatine, Neurosci Bull., 22, 187\nRaab, 2004, Impaired brain angiogenesis and neuronal apoptosis induced by conditional homozygous inactivation of vascular endothelial growth factor, Thromb Haemost., 91, 595, 10.1160\u002FTH03-09-0582\nRegunathan, 1996, Imidazoline receptors and agmatine in blood vessels: a novel system inhibiting vascular smooth muscle proliferation, J. Phalmacol. Expt. Therap., 276, 1272\nRosenberg, 1998, Matrix metalloproteinases and TIMPs are associated with blood-brain barrier opening after reperfusion in rat brain, Stroke., 29, 2189, 10.1161\u002F01.STR.29.10.2189\nSanthanam, 2007, Activation of protein kinase B\u002FAkt and endothelial nitric oxide synthase mediates agmatine-induced endothelium-dependent relaxation, Eur. J. Pharmacol., 572, 189, 10.1016\u002Fj.ejphar.2007.06.031\nSapolsky, 1990, Hippocampal damage associated with prolonged glucocorticoid exposure in primates, J. Neurosci., 10, 2897, 10.1523\u002FJNEUROSCI.10-09-02897.1990\nSchwartz, 1997, Agmatine affects glomerular filtration via a nitric oxide synthase-dependent mechanism, Am. J. Physiol., 272, F597\nSener, 1989, Stimulus-secretion coupling of arginine-induced insulin release. Insolinotropic action of agmatine, Biochem. Pharmacol., 38, 327, 10.1016\u002F0006-2952(89)90044-0\nSengul, 2008, A preliminary histopathological study of the effect of agmatine on diffuse brain injury in rats, J. Clin. Neurosci., 15, 1125, 10.1016\u002Fj.jocn.2007.11.005\nSeong G.J., Kim C.Y., Lee J.E., Hong S., 2011. Use of agmatine for protection of retinal ganglion cells. US Patent, US 8,084,502 B2, Dec. 27, 2011.\nSezer, 2014, Neuroprotective effects of agmatine in rat peripheral nerve injury, Turkish Neurosurgery., 24, 196\nShepherd, 1996, Elevation of cytosolic calcium by imidazolines in mouse islets of langerhans: implications for stimulus–response coupling of insulin release, Br. J. Pharmacol., 119, 911, 10.1111\u002Fj.1476-5381.1996.tb15759.x\nSong, 2011, Agmatine enhances neurogenesis by increasing ERK1\u002F2 expression, and suppresses astrogenesis by decreasing BMP 2, 4 and SMAD 1, 5, 8 expression in subventricular zone neural stem cells, Life Sci., 89, 439, 10.1016\u002Fj.lfs.2011.07.003\nTabor, 1984, Polyamines, Annu. Rev. Biochem., 3, 749, 10.1146\u002Fannurev.bi.53.070184.003533\nTakahashi, 1997, Neuroprotective effects of inhibiting poly(ADP-ribose) synthetase on focal cerebral ischemia in rats, J. Cereb. Blood Flow Metab., 17, 1137, 10.1097\u002F00004647-199711000-00001\nTaksande, 2011, Agmatine in the hypothalamic paraventricular nucleus stimulates feeding in rats: involvement of neuropeptide Y, Br. J. Pharmacol., 164, 704, 10.1111\u002Fj.1476-5381.2011.01484.x\nTaksande, 2015, Agmatine attenuates hyperactivity and weight loss associated with activity-based anorexia in female rats, Pharmacol. Biochem. Behav., 132, 136, 10.1016\u002Fj.pbb.2015.03.005\nTaksande, 2015, Agmatine attenuates lipopolysaccharide induced anorexia and sickness behavior in rats, Pharmacol. Biochem. Behav., 132, 108, 10.1016\u002Fj.pbb.2015.02.013\nTaksande, 2017, Acute orexigenic effect of agmatine involves interaction between central a2-adrenergic and GABAergic receptors, Biomed. Pharmacother., 93, 939, 10.1016\u002Fj.biopha.2017.07.004\nTavares, 2018, Agmatine potentiates neuroprotective effects of subthreshold concentrations of ketamine via mTOR\u002FS6 kinase signaling pathway, Neurochem.Int., 118, 275, 10.1016\u002Fj.neuint.2018.05.006\nTohidi, 2014, Neurology., 82\nUranchimeg, 2010, Recovered changes in the spleen by agmatine treatment after transient cerebral ischemia, Anat. Cell Biol., 43, 44, 10.5115\u002Facb.2010.43.1.44\nVlassara, 1994, Advanced glycation end products induce glomerular sclerosis and albuminuria in normal rats, Proc. Natl. Acad. Sci. USA., 91, 11704, 10.1073\u002Fpnas.91.24.11704\nWada, 1998, Inducible nitric oxide synthase expression after traumatic brain injury and neuroprotection with aminoguanidine treatment in rats, Neurosurgery, 43, 1427\nWang, 2006, Agmatine protects against cell damage induced by NMDA and glutamate in cultured hippocampal neurons, Brain Res., 1084, 210, 10.1016\u002Fj.brainres.2006.02.024\nWang, 2010, Beneficial effect of agmatine on brain apoptosis, astrogliosis, and edema after rat transient cerebral ischemia, BMC Pharmacol., 10, 11, 10.1186\u002F1471-2210-10-11\nWei, 2002, The influence of chemical sympathectomy on pain responsivity and alpha 2-adrenergic antinociception in neuropathic animals, Neuroscience, 114, 655, 10.1016\u002FS0306-4522(02)00328-7\nWheeler, 2001, Alpha-2 adrenergic receptor agonists are neuroprotective in experimental models of glaucoma, Eur. J. Ophthalmol., 11\nYang, 1999, Agmatine selectively blocks the N-methyl-D-aspartate subclass of glutamate receptor channels in rat hippocampal neurons, J. Pharmacol. Exp. Ther., 288, 544\nYang, 2007, Agmatine inhibits matrix metalloproteinase-9 via endothelial nitric oxide synthase in cerebral endothelial cells, Neurol. Res., 29, 749, 10.1179\u002F016164107X208103\nYu, 2000, Agmatine improves locomotor function and reduces tissue damage following spinal cord injury, Neuroreport., 11, 3203, 10.1097\u002F00001756-200009280-00031\nYu, 2003, Effects of agmatine, interleukin-10, and cyclosporin on spontaneous pain behavior after excitotoxic spinal cord injury in rats, J. Pain., 4, 129, 10.1054\u002Fjpai.2003.11\nZhu, 2003, Effect of agmatine against cell death induced by NMDA and glutamate in neurons and PC12 cells, Cell. Mol. Neurobiol., 23, 865, 10.1023\u002FA:1025069407173\nZhu, 2006, Neuroprotective effects of agmatine against cell damage caused by glucocorticoids in cultured rat hippocampal neurons, Neuroscience., 141, 2019, 10.1016\u002Fj.neuroscience.2006.05.011\nZhu, 2007, Chronic treatment with glucocorticoids alters rat hippocampal and prefrontal cortical morphology in parallel with endogenous agmatine and arginine decarboxylase levels, J. Neurochem., 103, 1811, 10.1111\u002Fj.1471-4159.2007.04867.x\nZhu, 2008, Exogenous agmatine has neuroprotective effects against restraint-induced structural changes in the rat brain, Eur. J. Neurosci., 27, 1320, 10.1111\u002Fj.1460-9568.2008.06104.x\nZhu, 2008, Repeated immobilization stress alters rat hippocampal and prefrontal cortical morphology in parallel with endogenous agmatine and arginine decarboxylase levels, Neurochem. Int., 53, 346, 10.1016\u002Fj.neuint.2008.09.001\nZunszain, 2011, Glucocorticoids, cytokines and brain abnormalities in depression, Prog. Neuropsychopharmacol. Biol. Psychiatry, 35, 722, 10.1016\u002Fj.pnpbp.2010.04.011",{"VOID":2316},"10.1016\u002Fj.neuro.2019.05.001","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X19300373",[2319,2343,2356],{"id":2320,"sortIndex":32,"researcher":28,"roles":2321,"affiliations":2322,"properties":2340,"displayName":2342,"givenName":28,"familyName":28},"5333d4aa-fb0e-4bb1-ad19-aecae58cd11a",[956],[2323,2331],{"id":2324,"sortIndex":32,"affiliation":2325,"properties":28},"1004a5d3-9493-4701-902c-e44a309264dd",{"id":2324,"createTime":28,"updateTime":28,"relativeEntities":2326,"slug":28,"properties":2327,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2330,"statistic":28},[],{"title":2328},{"VI":2329},"Division of Neuroscience, Department of Pharmacology, Shrimati Kishoritai Bhoyar College of Pharmacy, New Kamptee, Nagpur, Maharashtra, 441 002, India",[],{"id":2332,"sortIndex":40,"affiliation":2333,"properties":2339},"9ab97143-e33f-4e5b-9fc2-84e1bf6b0e61",{"id":2332,"createTime":28,"updateTime":28,"relativeEntities":2334,"slug":28,"properties":2335,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2338,"statistic":28},[],{"title":2336},{"VI":2337},"Government Colleges of Pharmacy, Kathora Naka, Amravati 444 604, Maharashtra, India",[],{},{"title":2341},{"VI":2342},"Nandkishor Ramdas Kotagale",{"id":2344,"sortIndex":40,"researcher":28,"roles":2345,"affiliations":2346,"properties":2353,"displayName":2355,"givenName":28,"familyName":28},"bd1a8ca2-2c18-4641-b597-669d4091c077",[956],[2347],{"id":2324,"sortIndex":32,"affiliation":2348,"properties":28},{"id":2324,"createTime":28,"updateTime":28,"relativeEntities":2349,"slug":28,"properties":2350,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2352,"statistic":28},[],{"title":2351},{"VI":2329},[],{"title":2354},{"VI":2355},"Brijesh Gulabrao Taksande",{"id":2357,"sortIndex":123,"researcher":28,"roles":2358,"affiliations":2359,"properties":2373,"displayName":2375,"givenName":28,"familyName":28},"d901fb19-7c3c-4e68-8c8b-f1c1724ae101",[956],[2360,2366],{"id":2324,"sortIndex":32,"affiliation":2361,"properties":28},{"id":2324,"createTime":28,"updateTime":28,"relativeEntities":2362,"slug":28,"properties":2363,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2365,"statistic":28},[],{"title":2364},{"VI":2329},[],{"id":2332,"sortIndex":40,"affiliation":2367,"properties":2372},{"id":2332,"createTime":28,"updateTime":28,"relativeEntities":2368,"slug":28,"properties":2369,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2371,"statistic":28},[],{"title":2370},{"VI":2337},[],{},{"title":2374},{"VI":2375},"Nazma Najirahmad Inamdar",{"url":2317,"publisher":2377,"properties":2412},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":2378,"slug":872,"properties":2379,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":2382,"manageAffiliations":2391,"indexDatabases":2397,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":2380,"title":2381},{"VOID":875},{"EN":872},[2383,2387],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":2384,"label":2385,"description":2386,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":2388,"label":2389,"description":2390,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[2392],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":2393,"slug":28,"properties":2394,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2396,"statistic":28},[],{"title":2395},{"EN":897},[],[2398,2405],{"id":901,"indexDatabase":2399,"url":907,"indexYears":908,"academicFieldIds":2404,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":2400,"label":2401,"description":2402,"key":781,"publicationTags":2403,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":2406,"url":926,"indexYears":28,"academicFieldIds":2411,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":2407,"label":2408,"description":2409,"key":923,"publicationTags":2410,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":2413,"volume":2415},{"VOID":2414},"228-245",{"VOID":2416},"73","2019-07-01",[912,925],{"id":2420,"createTime":2421,"updateTime":2421,"relativeEntities":2422,"slug":28,"properties":2423,"entityType":948,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":32,"primaryUrl":2430,"fullTextUrl":28,"authors":2431,"publicationType":995,"publisherRelationship":2518,"citationCount":28,"citationInfo":28,"publishDate":2559,"publishYear":2560,"citationAnalyzeStatus":877,"lastCitationAnalyze":28,"indexDatabases":2561,"openAccess":28,"references":28,"isForceReanalyzing":1040},"01c4797a-f6d5-4430-b5b7-cee8423dcb7d","2024-01-25T21:18:24.304+00:00",[],{"title":2424,"references":2426,"doi":2428},{"EN":2425},"Dynamin-related protein 1 mediates mitochondria-dependent apoptosis in chlorpyrifos-treated SH-SY5Y cells",{"VOID":2427},"Agarwal, 1998, The p53 network, J. Biol. Chem., 273, 1, 10.1074\u002Fjbc.273.1.1\nBeal, 2005, Mitochondria take center stage in aging and neurodegeneration, Ann. Neurol., 58, 495, 10.1002\u002Fana.20624\nBedner, 2000, Translocation of Bax to mitochondria during apoptosis measured by laser scanning cytometry, Cytometry, 41, 83, 10.1002\u002F1097-0320(20001001)41:2\u003C83::AID-CYTO1>3.0.CO;2-R\nCassidy-Stone, 2008, Chemical inhibition of the mitochondrial division dynamin reveals its role in Bax\u002FBak-dependent mitochondrial outer membrane permeabilization, Dev. Cell, 14, 193, 10.1016\u002Fj.devcel.2007.11.019\nCaughlan, 2004, Chlorpyrifos induces apoptosis in rat cortical neurons that is regulated by a balance between p38 and ERK\u002FJNK MAP kinases, Toxicol. Sci., 78, 125, 10.1093\u002Ftoxsci\u002Fkfh038\nChan, 2012, Fusion and fission: interlinked processes critical for mitochondrial health, Annu. Rev. Genet., 46, 265, 10.1146\u002Fannurev-genet-110410-132529\nChanda, 1996, Neurochemical and neurobehavioral effects of repeated gestational exposure to chlorpyrifos in maternal and developing rats, Pharmacol. Biochem. Behav., 53, 771, 10.1016\u002F0091-3057(95)02105-1\nCho, 2013, Physiological and pathological significance of dynamin-related protein 1 (Drp1)-dependent mitochondrial fission in the nervous system, Exp. Neurobiol., 22, 149, 10.5607\u002Fen.2013.22.3.149\nCrumpton, 2000, Is oxidative stress involved in the developmental neurotoxicity of chlorpyrifos?, Brain Res. Dev. Brain Res., 121, 189, 10.1016\u002FS0165-3806(00)00045-6\nEaton, 2008, Review of the toxicology of chlorpyrifos with an emphasis on human exposure and neurodevelopment, Crit. Rev. Toxicol., 38, 1, 10.1080\u002F10408440802272158\nElgass, 2013, Recent advances into the understanding of mitochondrial fission, Biochim. Biophys. Acta, 1833, 150, 10.1016\u002Fj.bbamcr.2012.05.002\nFrank, 2001, The role of dynamin-related protein 1, a mediator of mitochondrial fission, in apoptosis, Dev. Cell, 1, 515, 10.1016\u002FS1534-5807(01)00055-7\nFukushima, 2001, The GTPase effector domain sequence of the Dnm1p GTPase regulates self-assembly and controls a rate-limiting step in mitochondrial fission, Mol. Biol. Cell, 12, 2756, 10.1091\u002Fmbc.12.9.2756\nGermain, 2005, Endoplasmic reticulum BIK initiates DRP1-regulated remodelling of mitochondrial cristae during apoptosis, EMBO J., 24, 1546, 10.1038\u002Fsj.emboj.7600592\nGeter, 2008, Investigations of oxidative stress, antioxidant response, and protein binding in chlorpyrifos exposed rat neuronal PC12 cells, Toxicol. Mech. Methods, 18, 17, 10.1080\u002F15376510701389530\nGomez-Lazaro, 2008, 6-Hydroxydopamine (6-OHDA) induces Drp1-dependent mitochondrial fragmentation in SH-SY5Y cells, Free Radical Biol. Med., 44, 1960, 10.1016\u002Fj.freeradbiomed.2008.03.009\nGrohm, 2012, Inhibition of Drp1 provides neuroprotection in vitro and in vivo, Cell Death Differ., 19, 1446, 10.1038\u002Fcdd.2012.18\nGupta, 2004, Brain regional heterogeneity and toxicological mechanisms of organophosphates and carbamates, Toxicol. Mech. Methods, 14, 103, 10.1080\u002F15376520490429175\nGupta, 2010, Chlorpyrifos induces apoptosis and DNA damage in Drosophila through generation of reactive oxygen species, Ecotoxicol. Environ. Saf., 73, 1415, 10.1016\u002Fj.ecoenv.2010.05.013\nGuo, 2013, Inhibition of mitochondrial fragmentation diminishes Huntington's disease-associated neurodegeneration, J. Clin. Invest., 123, 5371, 10.1172\u002FJCI70911\nGuo, 2014, Drp1 stabilizes p53 on the mitochondria to trigger necrosis under oxidative stress conditions in vitro and in vivo, Biochem. J., 461, 137, 10.1042\u002FBJ20131438\nHarris, 2000, The role of the Bcl-2 family in the regulation of outer mitochondrial membrane permeability, Cell Death Differ., 7, 1182, 10.1038\u002Fsj.cdd.4400781\nHsuan, 2006, Basic fibroblast growth factor protects against rotenone-induced dopaminergic cell death through activation of extracellular signal-regulated kinases 1\u002F2 and phosphatidylinositol-3 kinase pathways, J. Neurosci., 26, 4481, 10.1523\u002FJNEUROSCI.4922-05.2006\nHwang, 2010, UPF1 association with the cap-binding protein, CBP80, promotes nonsense-mediated mRNA decay at two distinct steps, Mol. Cell., 39, 396, 10.1016\u002Fj.molcel.2010.07.004\nJia, 2001, Bax translocation is crucial for the sensitivity of leukaemic cells to etoposide-induced apoptosis, Oncogene, 20, 4817, 10.1038\u002Fsj.onc.1204628\nKarbowski, 2002, Spatial and temporal association of Bax with mitochondrial fission sites, Drp1, and Mfn2 during apoptosis, J. Cell Biol., 159, 931, 10.1083\u002Fjcb.200209124\nKhar, 2003, Protection conferred by Bcl-2 expression involves reduced oxidative stress and increased glutathione production during hypothermia-induced apoptosis in AK-5 tumor cells, Free Radical Biol. Med., 35, 949, 10.1016\u002FS0891-5849(03)00469-6\nKi, 2013, JNK and p38 MAPK regulate oxidative stress and the inflammatory response in chlorpyrifos-induced apoptosis, Toxicol. Lett., 218, 235, 10.1016\u002Fj.toxlet.2013.02.003\nLee, 2012, Reactive oxygen species regulated mitochondria-mediated apoptosis in PC12 cells exposed to chlorpyrifos, Toxicol. Appl. Pharmacol., 263, 148, 10.1016\u002Fj.taap.2012.06.005\nLee, 2014, Nuclear NF-κB contributes to chlorpyrifos-induced apoptosis through p53 signaling in human neural precursor cells, Neurotoxicology, 42, 58, 10.1016\u002Fj.neuro.2014.04.001\nLi, 2010, miR-30 regulates mitochondrial fission through targeting p53 and the dynamin-related protein-1 pathway, PLoS Genet., 6, e1000795, 10.1371\u002Fjournal.pgen.1000795\nLopes, 2010, Comparison between proliferative and neuron-like SH-SY5Y cells as an in vitro model for Parkinson disease studies, Brain Res., 1337, 85, 10.1016\u002Fj.brainres.2010.03.102\nMarchenko, 2000, Death signal-induced localization of p53 protein to mitochondria. A potential role in apoptotic signaling, J. Biol. Chem., 275, 16202, 10.1074\u002Fjbc.275.21.16202\nMartinou, 2006, Which came first, the cytochrome c release or the mitochondrial fission?, Cell Death Differ., 13, 1291, 10.1038\u002Fsj.cdd.4401985\nMcCubrey, 2006, Reactive oxygen species-induced activation of the MAP kinase signaling pathways, Antioxid. Redox. Signal., 8, 1775, 10.1089\u002Fars.2006.8.1775\nMoser, 2000, Dose–response and time-course of neurobehavioral changes following oral chlorpyrifos in rats of different ages, Neurotoxicol. Teratol., 22, 713, 10.1016\u002FS0892-0362(00)00087-8\nOettinghaus, 2012, Less than perfect divorces: dysregulated mitochondrial fission and neurodegeneration, Acta Neuropathol., 123, 189, 10.1007\u002Fs00401-011-0930-z\nOjha, 2013, Evaluation of DNA damage and cytotoxicity induced by three commonly used organophosphate pesticides individually and in mixture, in rat tissues, Environ. Toxicol., 28, 543, 10.1002\u002Ftox.20748\nQiao, 2001, Developmental neurotoxicity of chlorpyrifos modeled in vitro: comparative effects of metabolites and other cholinesterase inhibitors on DNA synthesis in PC12 and C6 cells, Environ. Health Perspect., 109, 909, 10.1289\u002Fehp.01109909\nOng, 2010, Inhibiting mitochondrial fission protects the heart against ischemia\u002Freperfusion injury, Circulation, 121, 2012, 10.1161\u002FCIRCULATIONAHA.109.906610\nPark, 2013, Autophagy regulates chlorpyrifos-induced apoptosis in SH-SY5Y cells, Toxicol. Appl. Pharmacol., 268, 55, 10.1016\u002Fj.taap.2013.01.013\nRanjbar, 2002, Induction of oxidative stress and acetylcholinesterase inhibition in organophosphorous pesticide manufacturing workers, Hum. Exp. Toxicol., 21, 179, 10.1191\u002F0960327102ht238oa\nReddy, 2011, Dynamin-related protein 1 and mitochondrial fragmentation in neurodegenerative diseases, Brain Res. Rev., 67, 103, 10.1016\u002Fj.brainresrev.2010.11.004\nSanchis-Gomar, 2014, Mitochondrial fission and fusion in human diseases, N. Engl. J. Med., 370, 1073, 10.1056\u002FNEJMc1316254\nSaulsbury, 2009, Chlopyrifos induces oxidative stress in oligodendrocyte progenitor cells, Toxicology, 259, 1, 10.1016\u002Fj.tox.2008.12.026\nSolesio, 2012, Characterization of mitophagy in the 6-hydoxydopamine Parkinson's disease model, Toxicol. Sci., 129, 411, 10.1093\u002Ftoxsci\u002Fkfs218\nTanaka, 2008, A chemical inhibitor of DRP1 uncouples mitochondrial fission and apoptosis, Mol. Cell, 29, 409, 10.1016\u002Fj.molcel.2008.02.005\nTorres, 2003, Redox signaling and the MAP kinase pathways, Biofactors, 17, 287, 10.1002\u002Fbiof.5520170128\nVan der Bliek, 2013, Mechanisms of mitochondrial fission and fusion, Cold Spring Harb. Perspect. Biol., 5, a011072, 10.1101\u002Fcshperspect.a011072\nVerma, 2007, In vivo chlorpyrifos oxidative stress: attenuation by antioxidant vitamins, Pestic. Biochem. Physiol., 88, 191, 10.1016\u002Fj.pestbp.2006.11.002\nWang, 2011, miR-499 regulates mitochondrial dynamics by targeting calcineurin and dynamin-related protein-1, Nat. Med., 17, 71, 10.1038\u002Fnm.2282\nWang, 2008, Amyloid-beta overproduction causes abnormal mitochondrial dynamics via differential modulation of mitochondrial fission\u002Ffusion proteins, Proc. Natl. Acad. Sci. U.S.A., 105, 19318, 10.1073\u002Fpnas.0804871105\nWang, 2011, DLP1-dependent mitochondrial fragmentation mediates 1-methyl-4-phenylpyridinium toxicity in neurons: implications for Parkinson's disease, Aging Cell, 10, 807, 10.1111\u002Fj.1474-9726.2011.00721.x\nWhitney, 1995, Developmental neurotoxicity of chlorpyrifos: cellular mechanisms, Toxicol. Appl. Pharmacol., 134, 53, 10.1006\u002Ftaap.1995.1168\nWu, 2011, Mitochondrial oxidative stress causes mitochondrial fragmentation via differential modulation of mitochondrial fission–fusion proteins, FEBS J., 278, 941, 10.1111\u002Fj.1742-4658.2011.08010.x\nXie, 2013, A selective inhibitor of Drp1, mdivi-1, protects against cell death of hippocampal neurons in pilocarpine-induced seizures in rats, Neurosci. Lett., 545, 64, 10.1016\u002Fj.neulet.2013.04.026\nYu, 2004, The hierarchical relationship between MAPK signaling and ROS generation in human leukemia cells undergoing apoptosis in response to the proteasome inhibitor Bortezomib, Exp. Cell Res., 295, 555, 10.1016\u002Fj.yexcr.2004.02.001\nZhang, 2013, A selective inhibitor of Drp1, mdivi-1, acts against cerebral ischemia\u002Freperfusion injury via an anti-apoptotic pathway in rats, Neurosci. Lett., 535, 104, 10.1016\u002Fj.neulet.2012.12.049\nZhou, 2002, Relationship between acute organophosphorus pesticide poisoning and damages induced by free radicals, Biomed. Environ. Sci., 15, 177\nZhu, 2004, Intra- and intermolecular domain interactions of the C-terminal GTPase effector domain of the multimeric dynamin-like GTPase Drp1, J. Biol. Chem., 279, 35967, 10.1074\u002Fjbc.M404105200",{"VOID":2429},"10.1016\u002Fj.neuro.2015.10.008","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0161813X15300085",[2432,2465,2478,2491],{"id":2433,"sortIndex":32,"researcher":28,"roles":2434,"affiliations":2435,"properties":2462,"displayName":2464,"givenName":28,"familyName":28},"8a66be2d-826d-4fbc-ac0c-7048e94e62b4",[956],[2436,2444,2453],{"id":2437,"sortIndex":32,"affiliation":2438,"properties":28},"85091a30-c1c1-4e9f-b388-952fab8f4d80",{"id":2437,"createTime":28,"updateTime":28,"relativeEntities":2439,"slug":28,"properties":2440,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2443,"statistic":28},[],{"title":2441},{"VI":2442},"Department of Pharmacology, College of Medicine, Hanyang University, Seoul, South Korea",[],{"id":2445,"sortIndex":40,"affiliation":2446,"properties":2452},"bd3c024c-deef-4ba3-9574-fd41f6d54e51",{"id":2445,"createTime":28,"updateTime":28,"relativeEntities":2447,"slug":28,"properties":2448,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2451,"statistic":28},[],{"title":2449},{"VI":2450},"Hanyang Biomedical Research Institute, Seoul, South Korea",[],{},{"id":2454,"sortIndex":123,"affiliation":2455,"properties":2461},"19d301a0-e189-44ed-b767-749c9baa34f9",{"id":2454,"createTime":28,"updateTime":28,"relativeEntities":2456,"slug":28,"properties":2457,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2460,"statistic":28},[],{"title":2458},{"VI":2459},"Graduate School of Biomedical Science and Engineering, Hanyang University, Seoul, South Korea",[],{},{"title":2463},{"VI":2464},"Jae Hyeon Park",{"id":2466,"sortIndex":40,"researcher":28,"roles":2467,"affiliations":2468,"properties":2475,"displayName":2477,"givenName":28,"familyName":28},"a3455eff-fb50-4845-9dda-9f00c2cdd4f1",[956],[2469],{"id":2445,"sortIndex":32,"affiliation":2470,"properties":28},{"id":2445,"createTime":28,"updateTime":28,"relativeEntities":2471,"slug":28,"properties":2472,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2474,"statistic":28},[],{"title":2473},{"VI":2450},[],{"title":2476},{"VI":2477},"Juyeon Ko",{"id":2479,"sortIndex":123,"researcher":28,"roles":2480,"affiliations":2481,"properties":2488,"displayName":2490,"givenName":28,"familyName":28},"97e84063-ad48-4a29-a845-0e0683326b96",[956],[2482],{"id":2454,"sortIndex":32,"affiliation":2483,"properties":28},{"id":2454,"createTime":28,"updateTime":28,"relativeEntities":2484,"slug":28,"properties":2485,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2487,"statistic":28},[],{"title":2486},{"VI":2459},[],{"title":2489},{"VI":2490},"Jungwook Hwang",{"id":2492,"sortIndex":42,"researcher":28,"roles":2493,"affiliations":2494,"properties":2515,"displayName":2517,"givenName":28,"familyName":28},"228a29b9-986f-4624-b2ca-871b9aea5d40",[956],[2495,2501,2508],{"id":2437,"sortIndex":32,"affiliation":2496,"properties":28},{"id":2437,"createTime":28,"updateTime":28,"relativeEntities":2497,"slug":28,"properties":2498,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2500,"statistic":28},[],{"title":2499},{"VI":2442},[],{"id":2445,"sortIndex":40,"affiliation":2502,"properties":2507},{"id":2445,"createTime":28,"updateTime":28,"relativeEntities":2503,"slug":28,"properties":2504,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2506,"statistic":28},[],{"title":2505},{"VI":2450},[],{},{"id":2454,"sortIndex":123,"affiliation":2509,"properties":2514},{"id":2454,"createTime":28,"updateTime":28,"relativeEntities":2510,"slug":28,"properties":2511,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2513,"statistic":28},[],{"title":2512},{"VI":2459},[],{},{"title":2516},{"VI":2517},"Hyun Chul Koh",{"url":2430,"publisher":2519,"properties":2554},{"id":868,"createTime":869,"updateTime":870,"relativeEntities":2520,"slug":872,"properties":2521,"entityType":25,"verifyStatus":877,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":46,"subjectFields":2524,"manageAffiliations":2533,"indexDatabases":2539,"url":28,"thumbnailPath":28,"statistic":28,"gsStatistic":28,"type":28,"analyzePriority":28},[],{"issn":2522,"title":2523},{"VOID":875},{"EN":872},[2525,2529],{"id":880,"createTime":28,"updateTime":28,"relativeEntities":2526,"label":2527,"description":2528,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":883},{},{"id":886,"createTime":28,"updateTime":28,"relativeEntities":2530,"label":2531,"description":2532,"parentId":28,"standard":28,"scholarHubFieldId":28},[],{"EN":889},{},[2534],{"id":893,"createTime":28,"updateTime":28,"relativeEntities":2535,"slug":28,"properties":2536,"entityType":28,"verifyStatus":28,"verifyTime":28,"verifyNote":28,"languages":28,"translateLanguages":28,"viewCount":28,"url":28,"parentIds":2538,"statistic":28},[],{"title":2537},{"EN":897},[],[2540,2547],{"id":901,"indexDatabase":2541,"url":907,"indexYears":908,"academicFieldIds":2546,"indexDatabaseRanking":912},{"id":775,"createTime":28,"updateTime":28,"relativeEntities":2542,"label":2543,"description":2544,"key":781,"publicationTags":2545,"standard":28},[],{"EN":778,"VI":778},{"EN":778,"VI":780},[783],[910,911],{"id":914,"indexDatabase":2548,"url":926,"indexYears":28,"academicFieldIds":2553,"indexDatabaseRanking":28},{"id":916,"createTime":28,"updateTime":28,"relativeEntities":2549,"label":2550,"description":2551,"key":923,"publicationTags":2552,"standard":28},[],{"EN":919,"VI":919},{"EN":921,"VI":922},[925,813],[928,929,930],{"pages":2555,"volume":2557},{"VOID":2556},"145-157",{"VOID":2558},"51","2015-12-01",2015,[912,925]]