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Res., 2007, vol. 12, pp. 135–143.",{"doi":423},"10.1007\u002FBF03033922",{"id":20,"text":425,"url":20,"identifiers":426},"Lesemann, A., Reinel, C., Huhnchen, P., Pilhatsch, M., Hellweg, R., Klaissle, P., Winter, C., and Steiner, B., Brain Res., 2012, vol. 1457, pp. 51–69.",{"doi":427},"10.1016\u002Fj.brainres.2012.03.046",{"id":20,"text":429,"url":20,"identifiers":430},"Fumagalli, F., Molteni, R., Bedogni, F., Gennarelli, M., Perez, J., Racagni, G., and Riva, M.A., Neuroreport, 2004, vol. 15, pp. 2109–2112.",{"doi":431},"10.1097\u002F00001756-200409150-00022",{"id":20,"text":433,"url":20,"identifiers":434},"Xu, H., Chen, Z., He, J., Haimanot, S., Li, X., Dyck, L., and Li, X.M., Hippocampus, 2006, vol. 16, pp. 551–559.",{"doi":435},"10.1002\u002Fhipo.20184",{"id":20,"text":437,"url":20,"identifiers":438},"Park, S.W., Lee, S.K., Kim, J.M., Yoon, J.S., and Kim, Y.H., Neurosci. Let., 2006, vol. 402, pp. 25–29.",{"doi":439},"10.1016\u002Fj.neulet.2006.03.028",{"id":20,"text":441,"url":20,"identifiers":442},"Kim, H.W., Cheon, Y., Modi, H.R., Rapoport, S.I., and Rao, J.S., Psychopharmacology (Berl.), 2012, vol. 222, pp. 663–674.",{"doi":443},"10.1007\u002Fs00213-012-2671-7",{"id":20,"text":445,"url":20,"identifiers":446},"Rizig, M.A., McQuillin, A., Ng, A., Robinson, M., Harrison, A., Zvelebil, M., Hunt, S.P., and Gurling, H.M., J. Psychopharmacol., 2012, vol. 26. pp. 1218–1230.",{"doi":447},"10.1177\u002F0269881112450780",{"id":20,"text":449,"url":20,"identifiers":450},"Saavedra, A., Baltazar, G., and Duarte, E.P., Prog. Neurobiol., 2008, vol. 86, pp. 186–215.",{"doi":451},"10.1016\u002Fj.pneurobio.2008.09.006",{"id":20,"text":453,"url":20,"identifiers":454},"Saavedra, A., Baltazar, G., Santos, P., Carvalho, C.M., and Duarte, E.P., Neurobiol. D., 2006, vol. 23, pp. 533–542.",{"doi":455},"10.1016\u002Fj.nbd.2006.04.008",{"id":20,"text":457,"url":20,"identifiers":458},"Lindholm, P., Voutilainen, M.H., Laurén, J., Peränen, J., Leppänen, V.M., Andressoo, J.O., Lindahl, M., Janhunen, S., Kalkkinen, N., Timmusk, T., Tuominen, R.K., and Saarma, M., Nature, 2007, vol. 448, pp. 73–77.",{"doi":459},"10.1038\u002Fnature05957",{"id":20,"text":461,"url":20,"identifiers":462},"Voutilainen, M.H., Bäck, S., Peränen, J., Lindholm, P., Raasmaja, A., Männistö, P.T., Saarma, M., and Tuominen, R.K., Exp. Neurol., 2011, vol. 228, pp. 99–108.",{"doi":463},"10.1016\u002Fj.expneurol.2010.12.013",false,{"id":466,"createTime":467,"updateTime":467,"relativeEntities":468,"slug":20,"properties":469,"entityType":156,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":119,"primaryUrl":478,"fullTextUrl":20,"authors":479,"publicationType":260,"publisherRelationship":563,"citationCount":20,"citationInfo":20,"publishDate":596,"publishYear":597,"citationAnalyzeStatus":19,"lastCitationAnalyze":20,"indexDatabases":20,"openAccess":20,"references":20,"isForceReanalyzing":464},"714c0050-9b42-4b0b-b878-36b7d5f51cec","2024-01-24T23:50:19.005+00:00",[],{"references":470,"abstract":472,"title":474,"doi":476},{"VOID":471},"Chou, S.M. and Hartmann, H.A., Acta Neuropathol., 1964, vol. 3, pp. 428–450.\nClark, A.W., Griffin, J.W., and Price, D.L., J. Neuropathol. Exp. Neurol., 1980, vol. 39, pp. 42–55.\nLlorens, J., Demêmes, D., and Sans, A., Toxicol. Appl. Pharmacol., 1993, vol. 123, pp. 199–210.\nKhan, H.A., Al Deeb, S., Al Moutaery, K., and Tariq, M., Exp. Toxicol. Pathol., 2003, vol. 55, pp. 181–186.\nKhan, H.A., Exp. Toxicol. Pathol., 2012, vol. 64, pp. 791–796.\nTariq, M., Khan, H.A., Al Deeb, S., and Al Moutaery, K., Neurosci. Lett., 1999, vol. 276, pp. 49–52.\nKhan, H.A. and Ibrahim, K.E., Arch. Med. Sci., 2015, vol. 11, pp. 1137-1144.\nIbrahim, K.E., Khan, H.A., and Omer, F.A., Exp. Toxicol. Pathol., 2014, vol. 66, pp. 89–96.\nWakata, N., Araki, Y., Sugimoto, H., Iguchi, H., and Kinoshita, M., Neurochem. Res., 2000, vol. 25, pp. 401–404.\nTariq, M., Khan, H.A., Al Moutaery, K., and Al Deeb, S., Exp. Neurol., 1999, vol. 158, pp. 229–233.\nCadet, J.L., Jackson-Lewis, V., and Fahn, S., Brain Res., 1988, vol. 456, pp. 371–374.\nCadet, J.L., and Karoum, F., Synapse., 1988, vol. 2, pp. 23–27.\nOgawa, N., Mizukawa, K., Haba, K., and Sato, H., Eur. Neurol., 1990, vol. 30, pp. 31–40.\nHirata, H., Ogawa, N., Asanuma, M., Ota, Z., and Mori, A., Brain Res., 1993, vol. 604, pp. 197–204.\nOgawa, N., Haba, K., Asanuma, M., and Mori, A., Brain Res., 1991, vol. 556, pp. 271–279.\nKhan, H.A., Alhomida, A.S., and Arif, I.A., Toxicol. Sci., 2009, vol. 109, pp. 124–131.\nFornai, F., Alessandri, M.G., Saginario, A., Vaglini, F., and Corsini, G.U., Brain Res., 1993, vol. 605, pp. 93–100.\nTariq, M., Khan, H.A., Moutaery, K.A., and Deeb, S.A., J. Appl. Toxicol., 1999, vol. 19, pp. 93–99.\nPerumal, A.S., Gopal, V.B., Tordzro, W.K., and Cadet, J.L., Brain Res. Bull., 1991, vol. 26, pp. 653–655.\nNomoto, N., J. Neurol. Sci., 2004, vol. 219, pp. 41–44.\nTariq, M., Khan, H.A., Rehana, Z., Al Moutaery, K., and Al Deeb, S., Neurotoxicol. Teratol., 1998, vol. 20, pp. 571–579.\nAl Deeb, S., Al Moutaery, K., Khan, H.A., and Tariq, M., Neurotoxicol. Teratol., 2000, vol. 22, pp. 213–220.\nTariq, M., Khan, H.A., Al Moutaery, K., and Al Deeb, S., Behav. Pharmacol., 2004, vol. 15, pp. 585–588.\nTariq, M., Al-Deeb, S., Al-Moutairy, K., and Ahmad Khan, H., Int. J. Neurosci., 1995, vol. 83, pp. 165–175.\nLohr, J.B., Cadet, J.L., Wyatt, R.J., and Freed, W.J., Neuropsychopharmacology., 1988, vol. 1, pp. 305–309.\nHsiao, H.Y., Chen, Y.C., Chen, H.M., Tu, P.H., and Chern, Y., Hum. Mol. Genet., 2013, vol. 22, pp. 1826–1842.\nHerlofson, K., Heijnen, C.J., Lange, J., Alves, G., Tysnes, O.B., Friedman, J.H., and Fagundes, C.P., Acta. Neurol. Scand., 2018, vol. 138, pp. 394–399.\nPaouri, E., and Georgopoulos, S., Curr. Alzheimer Res., 2019, vol. 16, pp. 559–574.\nDel-Bel, E., Bortolanza, M., Dos-Santos-Pereira, M., Bariotto, K., and Raisman-Vozari, R., Synapse., 2016, vol. 70, pp. 479–500.\nde Groot, N.S., and Burgas, M.T., Cell. Mol. Life Sci., 2015, vol. 72, pp. 4795–4805.\nColpo, G.D., Rocha, N.P., Stimming, E.F., and Teixeira, A.L., CNS Neurol. Disord. Drug Targets., 2017, vol. 16, pp. 936–944.\nLeonoudakis, D., Rane, A., Angeli, S., Lithgow, G.J., Andersen, J.K., and Chinta, S.J., Mediat. Inflamm., 2017, vol. 2017, 8302636.\nCayero-Otero, M.D., Espinosa-Oliva, A.M., Herrera, A.J., Garcia-Dominguez, I., Fernandez-Arevalo, M., Martin-Banderas, L., and de Pablos, R.M., Curr. Pharm. Des., 2018, vol. 24, pp. 1589–1616.\nTariq, M., Khan, H.A., Siddiquei, M.M., Al Moutaery, K., and Al Deeb, S., Basic Clin. Pharmacol. Toxicol., 2007, vol. 100, pp. 176–181.\nAl Kadasah, S., Al Mutairy, A., Siddiquei, M., Khan, H.A., Abdulwahid Arif, I., Al Moutaery, K., and Tariq, M., Behav. Pharmacol., 2009, vol. 20, pp. 356–360.\nTariq, M., Khan, H.A., Al Moutaery, K., and Al Deeb, S., Pharmacol. Biochem. Behav., 2002, vol. 73, pp. 647–654.",{"EN":473},"Iminodipropionitrile (IDPN) is a synthetic nitrile that produces permanent behavioral syndrome characterized by repetitive head movements, circling and back walking in rodents. Other synthetic nitriles of industrial importance such as crotonitrile and allylnitrile are also able to produce similar motor deficits in experimental animals. Among these nitriles, IDPN has been recognized as a prototype nitrile to be used as a positive control for behavioral testing battery. Due to the well-defined behavioral deficits and their easy quantification, IDPN-induced behavioral syndrome is a preferential animal model to test the interaction of various agents with synthetic nitriles. The mechanism of IDPN-induced dyskinesia is multifactorial. This short review focuses on the roles of neurotransmitters, oxidative stress and inflammation in the pathogenesis of IDPN-induced neurotoxicity and behavioral deficits.",{"EN":475},"A Short Review of Biochemical Mechanisms in Iminodipropionitrile-Induced Movement Disorder",{"VOID":477},"10.1134\u002FS1819712420010031","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1819712420010031",[480,510,522,539,551],{"id":481,"sortIndex":113,"researcher":20,"roles":482,"affiliations":484,"properties":507},"7bb54b82-0913-4e1a-abdc-82072f1eebb6",[483],"AUTHOR",[485,495],{"id":20,"sortIndex":21,"affiliation":486,"properties":20},{"id":487,"createTime":488,"updateTime":489,"relativeEntities":490,"slug":491,"properties":492,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"759896c2-a983-4087-9c08-84fc4a007e1f","2024-01-02T02:31:44.400+00:00","2024-10-10T05:41:26.189+00:00",[],"Department-of-Biochemistry-College-of-Science-King-Saud-University-Riyadh-Saudi-Arabia",{"title":493},{"VI":494},"Department of Biochemistry, College of Science, King Saud University, Riyadh, Saudi Arabia",{"id":496,"sortIndex":119,"affiliation":497,"properties":506},"c6445509-3d7d-44fb-a48f-df8a3f0a34c0",{"id":498,"createTime":499,"updateTime":500,"relativeEntities":501,"slug":502,"properties":503,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"0ca35a46-96b0-455e-9b48-ae8d232a2881","2024-01-24T23:50:19.045+00:00","2024-09-11T07:41:35.080+00:00",[],"Center-of-Excellence-in-Biotechnology-Research-College-of-Science-King-Saud-University-Riyadh-Saudi-Arabia",{"title":504},{"VI":505},"Center of Excellence in Biotechnology Research, College of Science, King Saud University, Riyadh, Saudi Arabia",{},{"title":508},{"VI":509},"Salman Alamery",{"id":511,"sortIndex":92,"researcher":20,"roles":512,"affiliations":513,"properties":519},"09751e2a-d580-4d50-abf6-3c646caf4436",[483],[514],{"id":20,"sortIndex":21,"affiliation":515,"properties":20},{"id":487,"createTime":488,"updateTime":489,"relativeEntities":516,"slug":491,"properties":517,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":518},{"VI":494},{"title":520},{"VI":521},"Hamza A. Odeibat",{"id":523,"sortIndex":21,"researcher":20,"roles":524,"affiliations":525,"properties":536},"2b221dcb-88a6-4024-b634-5eb96aa3ce8c",[483],[526],{"id":20,"sortIndex":21,"affiliation":527,"properties":20},{"id":528,"createTime":529,"updateTime":530,"relativeEntities":531,"slug":532,"properties":533,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"15a2e07c-2e31-40c9-8f45-1c9961bd52ca","2024-04-06T19:51:00.987+00:00","2024-10-13T06:40:52.228+00:00",[],"Department-of-Pharmaceutical-Chemistry-College-of-Pharmacy-King-Saud-University-Riyadh-Saudi-Arabia",{"title":534},{"VI":535},"Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia",{"title":537},{"VI":538},"Sara T. Alrashood",{"id":540,"sortIndex":106,"researcher":20,"roles":541,"affiliations":542,"properties":548},"6042061c-e80a-4610-b193-490bea7e4e14",[483],[543],{"id":20,"sortIndex":21,"affiliation":544,"properties":20},{"id":487,"createTime":488,"updateTime":489,"relativeEntities":545,"slug":491,"properties":546,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":547},{"VI":494},{"title":549},{"VI":550},"Haseeb A. Khan",{"id":552,"sortIndex":119,"researcher":20,"roles":553,"affiliations":554,"properties":560},"803abf23-5c3e-4fd0-a6fa-a39169d08fb5",[483],[555],{"id":20,"sortIndex":21,"affiliation":556,"properties":20},{"id":487,"createTime":488,"updateTime":489,"relativeEntities":557,"slug":491,"properties":558,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":559},{"VI":494},{"title":561},{"VI":562},"Mohamed S. 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Psychiat., 2002, vol. 52, pp. 1008–1030.\nHoyer, D. and Martin, G., Neuropharmacol., 1997, vol. 36, pp. 419–428.\nClenet, F., Hascoet, M., Fillion, G., Galons, H., and Bourin, M., Behav. Brain Res., 2005, vol. 158, pp. 339–348.\nGraeff, F.G., Netto, C.F., and Zangrossi, H., Jr., Neurosci. Behav. Rev., 1998, vol. 23, no. 2, pp. 237–246.\nSeredenin, S.B., and Voronin, M.V., Eksp. Klin. Farmakol., 2009, vol. 72, no. 1, pp. 3–10.\nBecker, W.J., Headache, 2015, vol. 55, no. 6, pp. 778–93.\nSokolov, A.Yu., Lyubashina, O.A., and Panteleev, S.S., Neurochem. J., 2011, vol. 28, no. 2, pp. 104–112.\nMehrotra, S., Gupta, S., and Chan, K.Y., Naunyn-Schmiedebergs Arch. Pharmacol., 2008, vol. 378, no. 4, pp. 371–394.\nMirzoyan, R.S., Seredenin, S.B., Gan’shina, T.S., Kostochka, L.M., Romanycheva, N.A., and Rusakov, D.Yu., Eksp. Klin. Farmakol., 1998, vol. 61, no. 2, pp. 28–31.\nKozhechkin, S.N., Kostochka, L.M., Bezhanyan, S.G., Mirzoyan, R.S., and Seredenin, S.B., Eksp. Klin. Farmakol., 2005, vol. 68, no. 4, pp. 3–6.\nBernstein, J., and Lott, W.A., US Patent 2838914, 1957.\nKostochka, L.M., Gan’shina, T.S., Naplekova, P.L., Narkevich, V.B., Voronina, T.A., Kudrin, V.S., Mirzoyan R.S., Kurdyumov, I.N., Gudasheva T.A., Zherdev, V.P., and Pyatin B.M., RF Patent application no. 2016133999, 2016.\nRaevskii, K.S., Narkevich, V.B., and Klodt, P.M., Eksp. Klin. Farmakol., 2011, vol. 12, pp. 3–7.\nDe Deurwaerdere, P., Navailles, S., Berg, K.A, Clarke, W.P., and Spampinato, U., J. Neurosci., 2004, vol. 24, pp. 3235–3241.\nRaevskii, K.S., Narkevich, V.B., Klodt, P.M., and Kudrin, V.S., Byull. Eksp. Biol. Med., 2012, vol. 153, no. 5, pp. 644–648.\nBlackburn, T.P., Suzuki, K., and Ashby, C.R., Jr., Synapse, 2006, vol. 59, pp. 502–512.\nDuxon, M.S., Kennett, G.A., Lightowler, S., Blackburn, T.P., and Fone, K.C., Neuropharmacol., 1997, vol. 36, pp. 601–608.\nNutt, D.J., CNS Spectr., 2005, vol. 10, pp. 49–56.\nKennett, G.A, Wood, M.D., Glen, A., Grewal, S., Forbes, I., Gadre, A., and Blackburn, T.P., Br. J. Pharmacol., 1994, vol. 111, pp. 797–802.\nJenck, F., Bos, M., Wichmann, J., Stadler, H., Martin, J.R., and Moreau, J.L., Exper. Opin. Investig. Drugs, 1998, vol. 7, no. 10, pp. 1587–1599.\nPancoesi, A., Cefalalgia, 1997, vol. 17, pp. 3–14.",{"EN":608},"The objective of this study was to investigate the effects of 2,3,4-trimethoxy-N'-(8-metyl-8-azabicyclo[3.2.1.] octan-3-ylidene) benzohydrazide hydrochloride (LK-933), a compound of the tropane group with anxiolytic and antimigraine activity, on the levels of monoamines and their metabolites in different brain structures of outbred mice using HPLC–ED. Administration of LK-933 caused an increase in the composite characteristics that describe the rate of dopamine transformation into its metabolites dioxyphenylacetic acid and homovanillic acid in the frontal cortex by 114 and 181%, respectively. The levels of homovanillic acid in the same structure increased by 49%. 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Biol., 1996, vol. 16, no. 3, pp. 977–989.",{"doi":1311},"10.1128\u002FMCB.16.3.977",{"id":20,"text":1313,"url":20,"identifiers":1314},"Fambrough, D., McClure, K., Kazlauskas, A., and Lander, E.S., Cell, 1999, vol. 97, no. 6, pp. 727–741.",{"doi":1315},"10.1016\u002FS0092-8674(00)80785-0",{"id":20,"text":1317,"url":20,"identifiers":1318},"York, R.D., Yao, H., Dillon, T., et al., Nature, 1998, vol. 392, no. 6676, pp. 622–626.",{"doi":1319},"10.1038\u002F33451",{"id":1321,"createTime":1322,"updateTime":1323,"relativeEntities":1324,"slug":1325,"properties":1326,"entityType":156,"verifyStatus":157,"verifyTime":1337,"verifyNote":158,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1338,"fullTextUrl":20,"authors":1339,"publicationType":260,"publisherRelationship":1442,"citationCount":21,"citationInfo":1474,"publishDate":1476,"publishYear":597,"citationAnalyzeStatus":19,"lastCitationAnalyze":1323,"indexDatabases":20,"openAccess":20,"references":20,"isForceReanalyzing":464},"2fab8d85-09cb-47b2-80df-f80652dcf554","2024-01-28T09:56:26.737+00:00","2026-05-01T23:47:33.655+00:00",[],"The-Role-of-Reduced-Polyamine-Synthesis-in-Ischemic-Stroke",{"references":1327,"abstract":1329,"title":1331,"doi":1333,"gsPaper":1335},{"VOID":1328},"Go, A.S., Mozaffarian, D., Roger, V.L., Benjamin, E.J., Berry, J.D., Blaha, M.J., Dai, S., Ford, E.S., Fox, C.S., Franco, S., Fullerton, H.J., Gillespie, C., Hailpern, S.M., Heit, J.A., Howard, V.J., Huffman, M.D., Judd, S.E., Kissela, B.M., Kittner, S.J., Lackland, D.T., Lichtman, J.H., Lisabeth, L.D., Mackey, R.H., Magid, D.J., Marcus, G.M., Marelli, A., Matchar, D.B., McGui-re, D.K., Mohler, E.R., Moy, C.S., Mussolino, M.E., Neumar, R.W., Nichol, G., Pandey, D.K., Paynter, N.P., Reeves, M.J., Sorlie, P.D., Stein, J., Towfighi, A., Turan, T.N., Virani, S.S., Wong, N.D., Woo, D., and Turner, M.B., Circulation, 2014, vol. 129, pp. 28–292.\nBrouns, R. and De Deyn, P.P., Clin. 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Biol., 2000, vol. 20, pp. 1040–1046.",{"EN":1330},"Our aim was to determine the levels of arginine decarboxylase (ADC), ornithine decarboxylase (ODC) and agmatine, ornithine, nitric oxide (NO) and arginase activity in the acute and subacute phases of acute ischemic stroke (AIS), by revealing the possible role of these levels in neuroinflammation and neurogenesis that are postulated to begin after AIS. 35 patients diagnosed with AIS and 35 controls were included in the study. ADC, ODC, agmatinase and NO levels were determined by ELISA kits. Arginase activity and ornithine levels were measured spectrophotometrically. There was no statistically significant difference between the levels of agmatinase, ornithine and arginase activity on days 1 and 7 in the AIS group and the levels measured in the control group (p > 0.05). High ADC and low ODC and NO values were found in the patients compared to the controls in both acute and subacute periods (p \u003C 0.05). It was shown that polyamine synthesis decreased in both acute and subacute periods after AIS; and this was due to the decrease in ODC levels, the rate-regulating step of the major pathway. This reduction may be associated with both the inadequate stimulation of neurogenesis and the immune system with reduced NO synthesis. polyamine synthesis enzymes, ornithine, ornitine decarboxylase, nitric oxide, arginine decarboxylase, agmatine, agmatinase, arginase activity, neuroinflammation, neurogenesis, immune system, acute ischemic stroke.",{"EN":1332},"The Role of Reduced Polyamine Synthesis in Ischemic Stroke",{"VOID":1334},"10.1134\u002FS1819712420020038",{"VOID":1336},"[\"13892841642139004185\"]","2024-05-17T00:42:50.320+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1819712420020038",[1340,1355,1370,1385,1402,1414,1428],{"id":1341,"sortIndex":106,"researcher":20,"roles":1342,"affiliations":1343,"properties":1352},"0a5fa331-e691-4348-a09a-c8ed4a1a6734",[483],[1344],{"id":20,"sortIndex":21,"affiliation":1345,"properties":20},{"id":1346,"createTime":1347,"updateTime":1347,"relativeEntities":1348,"slug":20,"properties":1349,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"b6d3e383-8374-4483-ab75-04d099a15090","2024-01-28T09:56:26.799+00:00",[],{"title":1350},{"VI":1351},"Erzincan University, Health Science Faculty, Nutrition and Dietetics Department, Erzincan, Turkey",{"title":1353},{"VI":1354},"H. Kilicgun",{"id":1356,"sortIndex":119,"researcher":20,"roles":1357,"affiliations":1358,"properties":1367},"00d57eb8-2975-4a30-b5ad-4e3529ead6c7",[483],[1359],{"id":20,"sortIndex":21,"affiliation":1360,"properties":20},{"id":1361,"createTime":1362,"updateTime":1362,"relativeEntities":1363,"slug":20,"properties":1364,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"338421ca-b4eb-4919-8627-fb1e4d34ae73","2024-01-28T09:56:26.761+00:00",[],{"title":1365},{"VI":1366},"Cumhuriyet University, Medicine Faculty, Neurology Department, Sivas, Turkey",{"title":1368},{"VI":1369},"A. Bolayir",{"id":1371,"sortIndex":114,"researcher":20,"roles":1372,"affiliations":1373,"properties":1382},"e77a482b-bd3c-40f6-bdf5-e56de28b1d57",[483],[1374],{"id":20,"sortIndex":21,"affiliation":1375,"properties":20},{"id":1376,"createTime":1377,"updateTime":1377,"relativeEntities":1378,"slug":20,"properties":1379,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"e839c82b-0080-4600-bb70-b3c6cf341986","2024-01-28T09:56:26.823+00:00",[],{"title":1380},{"VI":1381},"Sivas Numune State Hospital, Neurology Department, Sivas, Turkey",{"title":1383},{"VI":1384},"A. Gulunay",{"id":1386,"sortIndex":92,"researcher":20,"roles":1387,"affiliations":1388,"properties":1397},"b4122a3d-43a4-4da1-9033-5c78448702b4",[483],[1389],{"id":20,"sortIndex":21,"affiliation":1390,"properties":20},{"id":1391,"createTime":1392,"updateTime":1392,"relativeEntities":1393,"slug":20,"properties":1394,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"6333ab8e-2942-446b-9300-de1a407f059b","2024-01-28T09:56:26.773+00:00",[],{"title":1395},{"VI":1396},"Cumhuriyet University, Medicine Faculty, Biochemistry Department, Sivas, Turkey",{"title":1398,"gsAuthor":1400},{"VI":1399},"S. Kapancik",{"VOID":1401},"[\"eqwZr9IAAAAJ\"]",{"id":1403,"sortIndex":110,"researcher":20,"roles":1404,"affiliations":1405,"properties":1411},"48910db3-cd7c-4e3a-ae35-91441773a4d2",[483],[1406],{"id":20,"sortIndex":21,"affiliation":1407,"properties":20},{"id":1361,"createTime":1362,"updateTime":1362,"relativeEntities":1408,"slug":20,"properties":1409,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1410},{"VI":1366},{"title":1412},{"VI":1413},"S. F. 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Celik",{"VOID":1427},"[\"iimrxEYAAAAJ\"]",{"id":1429,"sortIndex":21,"researcher":20,"roles":1430,"affiliations":1431,"properties":1437},"f10a0556-9c5d-481f-8c37-fdc0b7915331",[483],[1432],{"id":20,"sortIndex":21,"affiliation":1433,"properties":20},{"id":1361,"createTime":1362,"updateTime":1362,"relativeEntities":1434,"slug":20,"properties":1435,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1436},{"VI":1366},{"title":1438,"gsAuthor":1440},{"VI":1439},"B. 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NAS RA, 1996, pp. 555–570.\nGaloyan, A.A., Biochemistry of Novel Cardioactive Hormones and Immunomodulators of the Functional System Neurosecretory Hypothalamus-Endocrine Heart, Moscow, 1997.\nGaloyan, A.A., Neurochem. Res., 2001, vol. 25, pp. 1343–1355.\nGaloyan, A.A., Terio, T., Berg, M., and Marks, N., Neirokhimiya (RAS and NAS RA), 2000, vol. 17, pp. 185–188.\nGaloyan, A.A. and Aprikyan, V.S., Neurochem. Res., 2002, vol. 27, pp. 305–312.\nAprikian, V.S., Galoyan, K.A., and Galoyan, A.A., J. Neurochem., 1999, vol. 72, p. S68D.\nGaloyan, A.A., Aprikyan, V.S., Markossian, K.A., and Gurvits, B.Ya., H Neirokhimiya (RAS and NAS RA), 1998, vol. 15, pp. 361–372.\nDavtyan, T.K., Manukyan, N.A., Mkrtchyan, R., and Galoyan, A.A., Neurochem. Res., 2005, vol. 3, pp. 297–309.\nGaloyan, A.A., Kipriyan, T.K., Sarkissian, J.S., Sarkissian, E.J., Grigorian, Y.Kh., Andreasian, A.S., and Chavushyan, E.A., Neurochem. Res., 2000, vol. 25, pp. 791–800.\nAprikyan, V.S. and Galoyan, A.A., Med. Sci. Armenia, 1999, vol. 31, no. 4, pp. 29–36.\nAprikian, V.S. and Galoyan, A.A., Neurokhimiya (RAS and NAS RA), 2000, vol. 17, pp. 60–63.\nChekhonin, V., Gurina, O., Ruabukin, I., Savchenko, E., and Galoyan A.L., Proceedings of the International Conference on Biochemical and Molecular-Biological Aspects of the Brain Immune System, 2001, pp. 140–145.\nGaloyan, A.A., Sarkissian, J.S., Kipriyan, T.K., Sarkissian, E.J., Chavushyan, E.A., Sulkhanyan, R.M., Meliksetyan, I.B., Abrahamyan, S.S., Grigorian, Y.Kh., Avetisyan, Z.A., and Otieva, N.V., Neurochem. Res., 2001, vol. 26, pp. 1023–1038.\nGaloyan, A.A., Proceedings of the International Conference on Biochemical and Molecular-Biological Aspects of the Brain Immune System, 2001, pp. 22–34.\nGaloyan, A.A., Sarkissian, J.S., Kipriyan, T.K., Sarkissian, E.J., Grigorian, Y.Kh., Sulkhanyan, R.M., and Khachatryan, T.S., Neurochem. Res., 2000, vol. 25, pp. 1567–1578.\nAbrahamyan, S.S., Sarkissian, J.S., Meliksetyan, L.B., and Galoyan, A.A., Neurochem. Res., 2004, vol. 29, pp. 695–708.\nAbrahamyan, S.S., Meliksetyan, I.B., Chavushyan, V.A., Aloyan, M.L., and Sarkissian, I.S., Clin. Neurosci., 2007, vol. 60, nos. 3–4, pp. 148–153.\nGaloyan, A.A., Sarkissian, J.S., Chavushyan, E.A., Abrahamyan, S.S., Grigorian, Y.Kh., Neurokhimiya, 2004, vol. 21, no. 4, pp. 265–288.\nShakhlamov, V.A., Galoyan, A.A., Polyakova, G.N., Vagradyan, A.G., Simonyan, M.A., Agadzhanov, M.I., Bogdanova, I.M., Altukhova, V.I., and Kondakova, L.I., Dokl. NAN AR, 2002, vol. 102, pp. 166–172.\nKirakosova, A.S., Abrahamyan, S.S., Tumasyan, N.V., Davtyan, T.K., and Khachatryan, A.R., Neurochem. Res., 2012, vol. 37, no. 1, pp. 2–4.\nAbrahamyan, S.S., Meliksetyan, I.B., Sulkhanyan, R.M., Sarkissian, J.S., and Galoyan, A.A., Neurochem. 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Neurochem., 2004, vol. 63, pp. 333–343.\nReinhold, D., Kähne, T., and Steinbrecher, A., Signal Transduction, 2005, vol. 5, pp. 258–265.\nAbrahamyan, S.S., Sahakyan, I.K., Meliksetyan, I.B., Tumasyan, N.V., Badalyan, B.Yu., and Galoyan, A.A., New Armen. Med. J., 2011, vol. 5, no. 2, pp. 60–68.\nTumasyan, N.V., Abrahamyan, S.S., Sahakyan, I.K., Meliksetyan, I.B., Badalyan, B.Yu., and Galoyan, A.A., Proceedings of the Keystone Symposia, 2013, p. 93.\nDanielyan, M.A., Sahakyan, I.K., Tumasyan, N.V., Abrahamyan, S.S., Meliksetyan, I.B., Proceedings of Second International Scientific Conference of Gorisskii State University, 2001, pp. 146–151.",{"EN":1487},"Proline rich polypeptide-1 (PRP-1) consisting of 15 amino acid residues (AGAPEPAEPAQPGVY) is a regulatory hypothalamic peptide possessing neuroprotective, immunoregulatory, hematopoietic, and antimicrobial properties. In order to quantify PRP-1 in rat blood, an enzyme linked immunosorbent assay (ELISA) has been applied using polyclonal antibody raised against the synthetic PRP-1 named “Galarmin”. In the present study, two post-injection periods were tested (5 hours and 2 days) after intraperitoneal (i\u002Fp) administration of PRP-1. The minimum detectable concentration of PRP-1 in intact rat blood serum has been shown to be approximately 1.78 ng\u002FmL. A significant increase of PRP-1 concentration in the blood samples has been observed in 5 hours after the PRP-1 i\u002Fp injection; however the peptide amount in the blood has been decreasing in 2 day post-injection period, approximating to the control level, which could be caused by the peptide proteolitic breakdown.",{"EN":1489},"Quantification of the hypothalamic proline rich polypeptide-1 in rat blood serum",{"VOID":1491},"10.1134\u002FS1819712414010024","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1819712414010024",[1494,1509,1522,1534,1546,1561,1573,1595],{"id":1495,"sortIndex":114,"researcher":20,"roles":1496,"affiliations":1497,"properties":1506},"f5f14b69-7389-4c11-89a5-d362d1d2cc0e",[483],[1498],{"id":20,"sortIndex":21,"affiliation":1499,"properties":20},{"id":1500,"createTime":1501,"updateTime":1501,"relativeEntities":1502,"slug":20,"properties":1503,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"5037ba2b-4197-439b-8d4f-532dca2a7915","2024-02-14T08:18:01.936+00:00",[],{"title":1504},{"VI":1505},"Institute of Biochemistry after Buniatian, NAS RA, Yerevan, Armenia",{"title":1507},{"VI":1508},"S. G. Chailyan",{"id":1510,"sortIndex":1511,"researcher":20,"roles":1512,"affiliations":1513,"properties":1519},"2ff8ac4c-25fd-4268-8e59-641d5de6b77d",7,[483],[1514],{"id":20,"sortIndex":21,"affiliation":1515,"properties":20},{"id":1500,"createTime":1501,"updateTime":1501,"relativeEntities":1516,"slug":20,"properties":1517,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1518},{"VI":1505},{"title":1520},{"VI":1521},"A. A. Galoyan",{"id":1523,"sortIndex":106,"researcher":20,"roles":1524,"affiliations":1525,"properties":1531},"5e150d7c-8985-4b4e-9c8a-eb0af49e9dd2",[483],[1526],{"id":20,"sortIndex":21,"affiliation":1527,"properties":20},{"id":1500,"createTime":1501,"updateTime":1501,"relativeEntities":1528,"slug":20,"properties":1529,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1530},{"VI":1505},{"title":1532},{"VI":1533},"I. K. Sahakyan",{"id":1535,"sortIndex":113,"researcher":20,"roles":1536,"affiliations":1537,"properties":1543},"8a3270be-c944-407c-a61a-46ccc24a6091",[483],[1538],{"id":20,"sortIndex":21,"affiliation":1539,"properties":20},{"id":1500,"createTime":1501,"updateTime":1501,"relativeEntities":1540,"slug":20,"properties":1541,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1542},{"VI":1505},{"title":1544},{"VI":1545},"A. R. Khachatryan",{"id":1547,"sortIndex":119,"researcher":20,"roles":1548,"affiliations":1549,"properties":1558},"174c950b-cda7-42fe-ba89-c0fb683a1fa0",[483],[1550],{"id":20,"sortIndex":21,"affiliation":1551,"properties":20},{"id":1552,"createTime":1553,"updateTime":1553,"relativeEntities":1554,"slug":20,"properties":1555,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"8575ce0f-315b-4d24-a9ea-67acd51e5872","2024-01-11T23:02:11.534+00:00",[],{"title":1556},{"VI":1557},"Laboratory of Immunology and Virology, Armenicum Research Center, Yerevan, Armenia",{"title":1559},{"VI":1560},"T. K. Davtyan",{"id":1562,"sortIndex":110,"researcher":20,"roles":1563,"affiliations":1564,"properties":1570},"6c12516f-19ef-4081-ac20-d3ff7b35a885",[483],[1565],{"id":20,"sortIndex":21,"affiliation":1566,"properties":20},{"id":1500,"createTime":1501,"updateTime":1501,"relativeEntities":1567,"slug":20,"properties":1568,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1569},{"VI":1505},{"title":1571},{"VI":1572},"H. A. Harutyunyan",{"id":1574,"sortIndex":21,"researcher":20,"roles":1575,"affiliations":1576,"properties":1592},"4bbed154-a38a-42ba-a44c-7e17af0fd4a3",[483],[1577,1582],{"id":20,"sortIndex":21,"affiliation":1578,"properties":20},{"id":1500,"createTime":1501,"updateTime":1501,"relativeEntities":1579,"slug":20,"properties":1580,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1581},{"VI":1505},{"id":1583,"sortIndex":119,"affiliation":1584,"properties":1591},"8c21ff10-0114-4c30-b8ac-bd3f05737c3d",{"id":1585,"createTime":1586,"updateTime":1586,"relativeEntities":1587,"slug":20,"properties":1588,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"8f87ef3d-1184-4687-8313-58471ee94637","2023-12-14T10:31:20.203+00:00",[],{"title":1589},{"VI":1590},"Yerevan, Armenia",{},{"title":1593},{"VI":1594},"S. S. Abrahamyan",{"id":1596,"sortIndex":92,"researcher":20,"roles":1597,"affiliations":1598,"properties":1604},"fb92db4d-d038-4091-b30b-4cbeb7e4c95f",[483],[1599],{"id":20,"sortIndex":21,"affiliation":1600,"properties":20},{"id":1500,"createTime":1501,"updateTime":1501,"relativeEntities":1601,"slug":20,"properties":1602,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1603},{"VI":1505},{"title":1605},{"VI":1606},"N. V. Tumasyan",{"url":1492,"publisher":1608,"properties":1635},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1609,"slug":10,"properties":1610,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":1614,"manageAffiliations":1615,"indexDatabases":1616,"url":20,"thumbnailPath":20,"statistic":1630,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":1611,"eissn":1612,"title":1613},{"VOID":13},{"VOID":15},{"EN":17},[],[],[1617,1624],{"id":46,"indexDatabase":1618,"url":61,"indexYears":20,"academicFieldIds":1623,"indexDatabaseRanking":20},{"id":48,"createTime":49,"updateTime":50,"relativeEntities":1619,"label":1620,"description":1621,"key":57,"publicationTags":1622,"standard":20},[],{"EN":53,"VI":53},{"VI":55,"EN":56},[59,60],[63],{"id":65,"indexDatabase":1625,"url":78,"indexYears":79,"academicFieldIds":20,"indexDatabaseRanking":80},{"id":67,"createTime":68,"updateTime":69,"relativeEntities":1626,"label":1627,"description":1628,"key":75,"publicationTags":1629,"standard":20},[],{"EN":72,"VI":72},{"EN":72,"VI":74},[77],{"impactFactor":21,"impactFactorByYear":1631,"i10Index":92,"i10IndexLast5Year":21,"totalPublication":93,"totalPublicationByYear":1632,"totalCitation":107,"totalCitationByYear":1633,"totalCitationPerPublication":120,"totalCitationPerPublicationByYear":1634,"hindexLast5Year":114,"hindex":114},{"2012":83,"2013":84,"2014":85,"2015":83,"2016":86,"2017":85,"2018":87,"2019":88,"2020":89,"2021":89,"2022":90,"2023":91},{"2007":95,"2008":96,"2009":96,"2010":96,"2011":97,"2012":98,"2013":99,"2014":100,"2015":96,"2016":101,"2017":100,"2018":98,"2019":102,"2020":103,"2021":102,"2022":104,"2023":105,"2024":106},{"2007":109,"2008":110,"2009":111,"2010":112,"2011":113,"2012":104,"2013":114,"2014":115,"2015":104,"2016":92,"2017":114,"2018":99,"2019":116,"2020":117,"2021":118,"2022":42,"2023":119},{"2007":122,"2008":89,"2009":123,"2010":124,"2011":85,"2012":125,"2013":126,"2014":127,"2015":128,"2016":129,"2017":130,"2018":131,"2019":132,"2020":122,"2021":133,"2022":134,"2023":83},{"volume":1636,"pages":1638},{"VOID":1637},"8",{"VOID":1639},"38-43","2014-03-07",2014,{"id":1643,"createTime":1644,"updateTime":1645,"relativeEntities":1646,"slug":1647,"properties":1648,"entityType":156,"verifyStatus":157,"verifyTime":1645,"verifyNote":158,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":1657,"fullTextUrl":20,"authors":1658,"publicationType":260,"publisherRelationship":1710,"citationCount":20,"citationInfo":20,"publishDate":1743,"publishYear":1744,"citationAnalyzeStatus":19,"lastCitationAnalyze":20,"indexDatabases":20,"openAccess":20,"references":20,"isForceReanalyzing":464},"ba2d26f2-e6ef-48d4-823b-a617f006b93d","2023-12-20T09:48:12.367+00:00","2024-10-10T23:45:55.496+00:00",[],"Cholesterol-and-lipid-rafts-in-the-plasma-membrane-of-nerve-terminal-and-membrane-of-synaptic-vesicles",{"references":1649,"abstract":1651,"title":1653,"doi":1655},{"VOID":1650},"Zefirov, A.L. and Petrov, A.M., Ros. Fiziol. zhurnal im. I.M. Sechenova, 2010, vol. 96, no. 8, pp. 753–765.\nJang, D.J., Park, S.W., and Kaang, B.K., BMB Rep., 2009, vol. 42, no. 1, pp. 1–5.\nTaverna, E., Saba, E., Rowe, J., Francolini, M., Clementi, F., and Rosa, P., J. Biol. Chem., 2004, vol. 279, no. 7, pp. 5127–5134.\nOwen, D.M., Neil, M.A.A., French, P.M.W., and Magee, A.I., Seminars in Cell and Development Biology, 2007, vol. 18, no. 5, pp. 591–598.\nOrlandi, P.A. and Fishman, P.H., J. Cell Biol., 1998, vol. 141, no. 4, pp. 905–915.\nFujinaga, Y., Wolf, A.A., Rodighiero, C., Wheeler, H., Tsai, B., Allen, L., Jobling, M.G., Rapoport, T., Holmes, R.K., and Lencer, W.I., Mol. Biol. Cell, 2003, vol. 14, no. 12, pp. 4783–4793.\nZefirov, A.L., Grigor’ev, P.N., Petrov, A.M., Minlebaev, M.G., and Sitdikova, G.F., Tsitologiya, 2003, vol. 45, no. 12, pp. 1163–1171.\nBetz, W.J. and Bewick, G.S., Science, 1992, vol. 255, no. 5041, pp. 200–203.\nPetrov, A.M., Giniatullin, A.R., Sitdikova, G.F., and Zefirov, A.L., J. Neurosci., 2008, vol. 28, no. 49, pp. 13216–13222.\nZefirov, A.L., Zakharov, A.V., Mukhametzyanov, R.D., and Petrov, A.M., Zhurn. Evolyuts. Biokhim. i Fiziol., 2008, vol. 44, no. 6, pp. 603–612.\nPetrov, A.M., Kasimov, M.R., Giniatullin, A.R., Tarakanova, O.I., and Zefirov, A.L., Ros. Fiziol. zhurn. im. I.M.Sechenova, 2009, vol. 95, no. 7, pp. 762–772.\nTong, J., Borbat, P.P., Freed, J.H., and Shin, Y-K., Proc. Natl. Acad. Sci. USA, 2009, vol. 106, no. 13, pp. 5141–5146.\nDi Paolo, G., Moskowitz, H.S., Gipson, K., Wenk, M.R., Voronov, S., Obayashi, M., Flavell, R., Fitzsimonds, R.M., Ryan, T.A., and De Camilli, P., Nature, 2004, vol. 431, no. 7007, pp. 415–422.\nZefirov, A.L. and Petrov, A.M., Priroda (Moscow, Russ. Fed.), 2009, no. 9, pp. 12–20.\nWillig, K.I., Rizzoli, S.O., Westphal, V., Jahn, R., and Hell, S.W., Nature, 2006, vol. 440, no. 7086, pp. 935–939.\nOpazo, F., Punge, A., Bückers, J., Hoopmann, P., Kastrup, L., Hell, S.W., and Rizzoli, S.O., Traffic., 2010, vol. 11, no. 6, pp. 800–812.",{"EN":1652},"In this study, using neuromusclar preparations of frog cutaneous pectoris muscle and mouse diaphragm we have shown that the membranes of nerve terminals (NT) contain nearly two times more cholesterol than the plasma membrane of muscle fibers. Using the fluorescent B subunit of cholera toxin (CT-B), we identified the areas in the NT membranes with high concentrations of GM1 ganglioside, the marker molecule for cholesterol- and sphingolipid-enriched membrane microdomains, so-called lipid rafts. Intense fluorescent spots appear in the NT when lipid rafts were identified during high-frequency stimulation, which cause massive exocytosis of synaptic vesicles followed by endocytosis. The double staining of neuromusclar preparations with CT-B and FM1-43, a dye that is taken up into synaptic vesicles during endocytosis, has demonstrated good colabeling by these dyes. This indicates the presence of large amounts of cholesterol and lipid rafts in membranes of synaptic vesicles. Thus, cholesterol is present in NT membranes at the high concentration required for the organization of lipid rafts, which are common in the plasma membranes of the NT and the membranes of synaptic vesicles. The role of cholesterol and lipid rafts in the processes of exo- and endocytosis is discussed.",{"EN":1654},"Cholesterol and lipid rafts in the plasma membrane of nerve terminal and membrane of synaptic vesicles",{"VOID":1656},"10.1134\u002FS1819712411010089","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1134\u002FS1819712411010089",[1659,1674,1686,1698],{"id":1660,"sortIndex":21,"researcher":20,"roles":1661,"affiliations":1662,"properties":1671},"c3620f01-9641-4987-872e-e3a09703fb74",[483],[1663],{"id":20,"sortIndex":21,"affiliation":1664,"properties":20},{"id":1665,"createTime":1666,"updateTime":1666,"relativeEntities":1667,"slug":20,"properties":1668,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"7c9f1524-b71b-424f-946c-09b0c0137c67","2023-12-20T09:47:55.839+00:00",[],{"title":1669},{"VI":1670},"Kazan Medical State University, Kazan, Russia",{"title":1672},{"VI":1673},"A. M. Petrov",{"id":1675,"sortIndex":113,"researcher":20,"roles":1676,"affiliations":1677,"properties":1683},"26a66be6-f605-4e3a-a8b4-c4e54b714b4d",[483],[1678],{"id":20,"sortIndex":21,"affiliation":1679,"properties":20},{"id":1665,"createTime":1666,"updateTime":1666,"relativeEntities":1680,"slug":20,"properties":1681,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1682},{"VI":1670},{"title":1684},{"VI":1685},"Yu. G. Odnoshivkina",{"id":1687,"sortIndex":92,"researcher":20,"roles":1688,"affiliations":1689,"properties":1695},"540559d6-2956-4ab8-b3da-8830933ad640",[483],[1690],{"id":20,"sortIndex":21,"affiliation":1691,"properties":20},{"id":1665,"createTime":1666,"updateTime":1666,"relativeEntities":1692,"slug":20,"properties":1693,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1694},{"VI":1670},{"title":1696},{"VI":1697},"A. L. Zefirov",{"id":1699,"sortIndex":119,"researcher":20,"roles":1700,"affiliations":1701,"properties":1707},"8543c13e-b8ac-49e8-8796-840fabd0dccd",[483],[1702],{"id":20,"sortIndex":21,"affiliation":1703,"properties":20},{"id":1665,"createTime":1666,"updateTime":1666,"relativeEntities":1704,"slug":20,"properties":1705,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},[],{"title":1706},{"VI":1670},{"title":1708},{"VI":1709},"K. E. 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Several pathological alterations are implicated in its pathogenesis, hence etiology is still poorly understood. Ferroptosis is an alternative form of cell death, driven by intracellular accumulation of iron with subsequent reactive oxygen species formation, which damages membranes, proteins, and DNA, causing cell death. The imbalance in iron homeostasis is rapidly gaining weight as a neurodegeneration cause, increasing the need to develop in vivo and in vitro models to understand the role of ferroptosis in Alzheimer’s disease pathogenesis. 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However, the initial modifications may disappear spontaneously or under conditions of less intense tetanization or the influence of depotentiating factors. The protein-dependent consolidation process, which mainly occurs within the first 30 min after induction in the LTP model, is an important condition for the maintenance of long-term modifications. In this article, the data that support the importance of local protein synthesis in the synaptic compartments are reviewed and the main principles of the regulation of the expression of genes that are crucial for consolidation are presented. We also discuss the role of directed mRNA transportation to the respective dendritic compartments and the involvement of reinforcing factors that are capable of eliciting and enhancing consolidation-related modifications. Taking the functional importance of transcription products into account, we can conclude that the key processes of consolidation are associated with the rearrangement of cytoskeletal proteins. This rearrangement is important for both the compartmentalization of proteins that are synthesized de novo and structural modifications found in LTP. Some factors indicate the similarity of the molecular mechanisms of consolidation in the pre- and postsynaptic compartments. Key proteins and enzymes of LTP consolidation are also involved in learning and memory; therefore, the principles that are discovered in models of long-term plasticity may be used for future experiments on animal learning in order to find similar mechanisms that are too local and diffuse, which makes their direct observation very difficult.",{"EN":2229},"Analysis of conditions that are important for the beginning of consolidation in a model of long-term synaptic potentiation",{"VOID":2231},"10.1134\u002FS1819712413030070","http:\u002F\u002Flink.springer.com\u002F10.1134\u002FS1819712413030070",[2234],{"id":2235,"sortIndex":21,"researcher":20,"roles":2236,"affiliations":2237,"properties":2260},"238880fd-7c6f-43ad-b81b-2afe5ebfc82b",[483],[2238,2248],{"id":20,"sortIndex":21,"affiliation":2239,"properties":20},{"id":2240,"createTime":2241,"updateTime":2242,"relativeEntities":2243,"slug":2244,"properties":2245,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"18ab7ebc-df02-427a-80bc-f656a43bee23","2024-01-13T03:27:42.599+00:00","2024-12-26T14:35:49.854+00:00",[],"Institute-of-Higher-Nervous-Activity-and-Neurophysiology-Russian-Academy-of-Sciences-Moscow-Russia",{"title":2246},{"VI":2247},"Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, Moscow, Russia",{"id":2249,"sortIndex":119,"affiliation":2250,"properties":2259},"b76b0eed-ae54-42dc-afc7-c173581efac4",{"id":2251,"createTime":2252,"updateTime":2253,"relativeEntities":2254,"slug":2255,"properties":2256,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"962db509-0e8b-4da9-836e-b346bec47f62","2024-04-18T03:53:14.949+00:00","2024-10-15T09:04:27.037+00:00",[],"Moscow-Russia",{"title":2257},{"EN":2258},"Moscow, Russia",{},{"title":2261},{"VI":2262},"I. 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It has been shown that hypoxia triggers a cascade of biochemical and molecular processes, such as energy insufficiency, depolarization of membranes, an increase in the release of mediators and suppression of their reuptake, an increase in the intracellular calcium level, and production of free radicals, which damage neurons and induce neurodegeneration and cell death. Simultaneously, compensatory-adaptive mechanisms that increase the resistance of the body to an oxygen deficit also begin to function in hypoxia. Further studies on the consequences of neonatal hypoxia in experiments with animals are necessary for the elucidation of the mechanisms of the acute and delayed effects of hypoxia, as well as for development of effective means for the correction of the negative consequences of perinatal hypoxia in clinics.",{"EN":2310},"The acute and delayed effects of perinatal hypoxic brain damage in children and in model experiments with rodents",{"VOID":2312},"10.1134\u002FS1819712416040127","http:\u002F\u002Flink.springer.com\u002F10.1134\u002FS1819712416040127",[2315,2351,2370],{"id":2316,"sortIndex":113,"researcher":20,"roles":2317,"affiliations":2318,"properties":2348},"5916955d-1835-44f8-92e3-c6e628037f98",[483],[2319,2327,2337],{"id":20,"sortIndex":21,"affiliation":2320,"properties":20},{"id":2321,"createTime":2322,"updateTime":2322,"relativeEntities":2323,"slug":20,"properties":2324,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"b1da8785-b5e4-4441-81e7-8d6128aa6f13","2024-02-09T08:32:00.821+00:00",[],{"title":2325},{"VI":2326},"Department of Human and Animal Physiology, Moscow State University, Moscow Russia",{"id":2328,"sortIndex":119,"affiliation":2329,"properties":2336},"5e4122f5-85a7-4652-bc93-45c6eaa7c266",{"id":2330,"createTime":2331,"updateTime":2331,"relativeEntities":2332,"slug":20,"properties":2333,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"17266896-2330-4b26-a7bb-6163622569af","2023-12-05T11:37:07.120+00:00",[],{"title":2334},{"VI":2335},"Institute of Molecular Genetics, Russian Academy of Sciences, Moscow, Russia",{},{"id":2338,"sortIndex":113,"affiliation":2339,"properties":2347},"46921212-a863-4265-83b2-6af42a5c31d2",{"id":2340,"createTime":2341,"updateTime":2341,"relativeEntities":2342,"slug":2343,"properties":2344,"entityType":41,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"syncStatus":19,"languages":20,"translateLanguages":20,"viewCount":21},"cb3df8bb-1af7-4db6-9911-d26a92381eab","2024-04-19T00:16:31.889+00:00",[],"Department-of-Biology-Moscow-State-University-Moscow-Russia",{"title":2345},{"EN":2346},"Department of Biology, Moscow State University, Moscow, Russia",{},{"title":2349},{"VI":2350},"N. 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