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Biến Đổi và Thay Đổi Mùa của Sự Bài Tiết Selenium, Molybdenum và I-ốt trong Nước Tiểu của Người Trưởng Thành Trẻ Khỏe Mạnh Nhật Bản
Tóm tắt
Selenium (Se), molybdenum (Mo), và iodine (I) là các yếu tố vi lượng thiết yếu và việc tiêu thụ đầy đủ các nguyên tố này là rất quan trọng cho sức khỏe con người. Những nguyên tố này có trong thực phẩm dễ dàng được hấp thụ từ ống tiêu hóa và chủ yếu được bài tiết qua nước tiểu, trạng thái dinh dưỡng của chúng phản ánh qua sự bài tiết nước tiểu; tuy nhiên, thông tin về biến động của việc bài tiết nước tiểu còn hạn chế. Để đặc trưng hóa nồng độ Se, Mo, và I trong nước tiểu cũng như các hệ số biến động (CV) trong và giữa các cá thể, mối tương quan và sự thay đổi theo mùa, mẫu nước tiểu điểm được thu thập từ 24 sinh viên khỏe mạnh của một trường đại học, gồm 10 nam và 14 nữ, với độ tuổi trung bình là 20,6 tuổi, trong 10 ngày liên tiếp ở mỗi mùa trong suốt 1 năm theo một lịch trình xác định của khoảng thời gian 3 tháng. Nồng độ trung vị của Se, Mo, và I cho tất cả mẫu nước tiểu (n = 947) lần lượt là 52,8, 127,0, và 223 μg/L. Lượng tiêu thụ Se và Mo cao nhất vào mùa hè và thấp nhất vào mùa xuân, trong khi lượng tiêu thụ I cao nhất vào mùa thu và thấp nhất vào mùa hè. Trong tất cả ba nguyên tố, CV trong cá thể nhỏ hơn CV giữa các cá thể. Các CV trong và giữa cá thể đã được biến đổi từ logarit lần lượt là 10,5% và 14,7% đối với Se, 12,3% và 15,1% đối với Mo, và 15,5% và 18,1% đối với I. Không có sự khác biệt giới tính nào trong nồng độ Se và I, trong khi nồng độ Mo và giá trị Mo/Cr ở nam giới cao hơn ở nữ giới. Kết quả của chúng tôi gợi ý sự trạng thái dinh dưỡng đầy đủ của Se, Mo và I với sự biến động tương đối nhỏ của việc tiêu thụ chế độ ăn, ngoại trừ I trong dân số này.
Từ khóa
#Selenium #Molybdenum #Iodine #Nutritional Status #Urinary ExcretionTài liệu tham khảo
citation_journal_title=Molecules; citation_title=Current knowledge on the importance of selenium in food for living organisms: a review; citation_author=M Kieliszek, S Błażejak; citation_volume=5; citation_publication_date=2016; citation_pages=609; citation_doi=10.3390/molecules21050609; citation_id=CR1
citation_journal_title=Adv Nutr; citation_title=Molybdenum; citation_author=JA Novotny, CA Peterson; citation_volume=9; citation_publication_date=2018; citation_pages=272-273; citation_doi=10.1093/advances/nmx001; citation_id=CR2
U.S. Department of Agriculture, U.S. Food and Drug Administration, National Institutes of Health (2022) USDA, FDA and ODS-NIH Database for the Iodine Content of Common Foods Release 2.
https://www.ars.usda.gov/northeast-area/beltsville-md-bhnrc/beltsville-human-nutrition-research-center/methods-and-application-of-food-composition-laboratory/mafcl-site-pages/iodine/
. Accessed 1 June 2022
citation_journal_title=Nutrients; citation_title=Selenium and health: an update on the situation in the Middle East and North Africa; citation_author=SAZ Ibrahim, A Kerkadi, A Agouni; citation_volume=11; citation_publication_date=2019; citation_pages=1457; citation_doi=10.3390/nu11071457; citation_id=CR4
citation_journal_title=Biochemistry Moscow; citation_title=Selenium metabolism and biosynthesis of selenoproteins in the human body; citation_author=WB Minich; citation_volume=87; citation_issue=Suppl 1; citation_publication_date=2022; citation_pages=S168-S177; citation_doi=10.1134/S0006297922140139; citation_id=CR5
Shreenath AP, Ameer MA, Dooley J. Selenium deficiency. [Updated 2021 Dec 29]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2022 Jan-. Available from:
https://www.ncbi.nlm.nih.gov/books/NBK482260/
. Accessed 1 June 2022
citation_journal_title=Molecules; citation_title=Selenium: an element of life essential for thyroid function; citation_author=F Gorini, L Sabatino, A Pingitore, C Vassalle; citation_volume=26; citation_issue=23; citation_publication_date=2021; citation_pages=7084; citation_doi=10.3390/molecules26237084; citation_id=CR7
citation_journal_title=J Biol Chem; citation_title=The molybdenum cofactor; citation_author=RR Mendel; citation_volume=288; citation_publication_date=2013; citation_pages=13165-13172; citation_doi=10.1074/jbc.R113.455311; citation_id=CR8
Eastman CJ, Zimmermann MB (2018)The iodine deficiency disorders. In: Feingold KR, Anawalt B, Boyce A, Chrousos G, de Herder WW, et al. (ed) Endotext [Internet]. MDText.com Inc, South Dartmouth, USA.
https://www.ncbi.nlm.nih.gov/books/NBK285556/
. Accessed 1 June 2022
citation_journal_title=Eur J Endocrinol; citation_title=Association of selenium with thyroid volume and echostructure in 35- to 60-year-old French adults; citation_author=H Derumeaux, P Valeix, K Castetbon, M Bensimon, MC Boutron-Ruault, J Arnaud, S Hercberg; citation_volume=148; citation_publication_date=2003; citation_pages=309-315; citation_doi=10.1530/eje.0.1480309; citation_id=CR10
citation_journal_title=J Clin Endocrinol Metab; citation_title=Low population selenium status is associated with increased prevalence of thyroid disease; citation_author=Q Wu, MP Rayman, H Lv, L Schomburg, B Cui, C Gao, P Chen, G Zhuang, Z Zhang, X Peng, H Li, Y Zhao, X He, G Zeng, F Qin, P Hou, B Shi; citation_volume=100; citation_publication_date=2015; citation_pages=4037-4047; citation_doi=10.1210/jc.2015-2222; citation_id=CR11
citation_journal_title=J Appl Toxicol; citation_title=Assessment of molybdenum toxicity in humans; citation_author=A Vyskočil, C Viau; citation_volume=19; citation_publication_date=1999; citation_pages=185-192; citation_doi=10.1002/(sici)1099-1263(199905/06)19:3<185::aid-jat555>3.0.co;2-z; citation_id=CR12
citation_journal_title=Eur J Endocrinol; citation_title=Global endocrinology: global perspectives in endocrinology: coverage of iodized salt programs and iodine status in 2020; citation_author=MB Zimmermann, M Andersson; citation_volume=185; citation_publication_date=2021; citation_pages=R13-R21; citation_doi=10.1530/EJE-21-0171; citation_id=CR13
citation_journal_title=Antioxid Redox Signal; citation_title=Selenium in human health and disease; citation_author=SJ Fairweather-Tait, Y Bao, MR Broadley, R Collings, D Ford, JE Hesketh, R Hurst; citation_volume=14; citation_publication_date=2011; citation_pages=1337-1383; citation_doi=10.1089/ars.2010.3275; citation_id=CR14
citation_journal_title=Nutrients; citation_title=A review of dietary selenium intake and selenium status in Europe and the Middle East; citation_author=R Stoffaneller, NL Morse; citation_volume=7; citation_publication_date=2015; citation_pages=1494-1537; citation_doi=10.3390/nu7031494; citation_id=CR15
citation_journal_title=J Evid Compl Alt Med; citation_title=Molybdenum nutriture in humans; citation_author=J Novotny; citation_volume=16; citation_publication_date=2011; citation_pages=164-168; citation_doi=10.1177/2156587211406732; citation_id=CR16
Iodine Global Network. Global scorecard of iodine nutrition in 2021 in the general population based on school-age children (SAC).
https://www.ign.org/cm_data/IGN_Global_Scorecard_2021_7_May_2021.pdf
. Accessed 1 June 2022
citation_journal_title=Ann N Y Acad Sci; citation_title=Excess iodine intake: sources, assessment, and effects on thyroid function; citation_author=J Farebrother, MB Zimmermann, M Andersson; citation_volume=1446; citation_publication_date=2019; citation_pages=44-65; citation_doi=10.1111/nyas.14041; citation_id=CR18
citation_journal_title=J Clin Endocrinol Metab; citation_title=Urinary iodine concentration follows a circadian rhythm: a study with 3023 spot urine samples in adults and children; citation_author=C Als, A Helbling, K Peter, M Haldimann, B Zimmerli, H Gerber; citation_volume=85; citation_publication_date=2000; citation_pages=1367-1369; citation_doi=10.1210/jcem.85.4.6496; citation_id=CR19
citation_journal_title=Endocr J; citation_title=Studies on urinary excretion and variability of dietary iodine in healthy Japanese adults; citation_author=Y Fuse, N Tsukada, Y Urakawa, J Yokoyama, M Matsuzaki, Y Shishiba, M Irie; citation_volume=69; citation_publication_date=2022; citation_pages=427-440; citation_doi=10.1507/endocrj.EJ21-0486; citation_id=CR20
citation_journal_title=Trace Nutr Res; citation_title=Intra- and inter-individual variation of urinary selenium, molybdenum and iodine concentration in healthy young Japanese adults; citation_author=A Mukama, M Yoshida; citation_volume=30; citation_publication_date=2013; citation_pages=93-96; citation_id=CR21
citation_journal_title=J Trace Elem Med Biol; citation_title=Serum molybdenum concentration in healthy Japanese adults determined by inductively coupled plasma-mass spectrometry; citation_author=M Yoshida, S Ota, K Fukunaga, T Nishiyama; citation_volume=20; citation_publication_date=2006; citation_pages=19-23; citation_doi=10.1016/j.jtemb.2005.10.003; citation_id=CR22
citation_journal_title=Clin Chem; citation_title=Simple microplate method for determination of urinary iodine; citation_author=T Ohashi, M Yamaki, CS Pandav, MG Karmarkar, M Irie; citation_volume=46; citation_publication_date=2000; citation_pages=529-536; citation_doi=10.1093/clinchem/46.4.529; citation_id=CR23
Makhmudov AA, Caldwell KL (2012) The Challenge of iodine deficiency disorder: a decade of CDC’s ensuring the quality of urinary iodine procedures program: EQUIP 10 year anniversary.
https://www.cdc.gov/labstandards/pdf/equip/EQUIP_Booklet.pdf
. Accessed 1 June 2022
Institute of Medicine (US) Panel on Micronutrients (2000) Selenium. In: Dietary reference intakes for vitamin C, vitamin E, selenium, and carotenoids. The National Academies Press, Washington, DC, pp 284–324.
https://doi.org/10.17226/9810
Institute of Medicine (US) Panel on Micronutrients (2001) Molybdenum. In: Dietary reference intakes for vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium, and zinc. The National Academies Press, Washington, DC, pp 420–441.
https://doi.org/10.17226/10026
Institute of Medicine (US) Panel on Micronutrients (2001) Iodine. In: Dietary reference intakes for vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium, and zinc. The National Academies Press, Washington, DC, pp 258–289.
https://doi.org/10.17226/10026
Summary of Dietary Reference Values – version 4 (September 2017) Overview on dietary reference values for the EU population as derived by the EFSA panel on dietetic products, nutrition and allergies (NDA)
https://www.efsa.europa.eu/sites/default/files/assets/DRV_Summary_tables_jan_17.pdf
. Accessed 1 June, 2022.
Summary of Tolerable Upper Intake Levels – version 4 (September 2018), Overview on tolerable upper intake levels as derived by the Scientific Committee on Food (SCF) and the EFSA Panel on Dietetic Products, Nutrition and Allergies (NDA).
https://www.efsa.europa.eu/sites/default/files/assets/UL_Summary_tables.pdf
. Accessed 1 June 2022
Minister of Health, Labour and Welfare, Japan (2021) Dietary reference intakes for Japanese 2021. (In Japanese).
https://www.mhlw.go.jp/stf/seisakunitsuite/bunya/kenkou_iryou/kenkou/eiyou/syokuji_kijyun.html
. Accessed 1 June 2022
citation_journal_title=J Food Compost Anal; citation_title=Selenium contents of rice grown at various sites in Japan; citation_author=M Yoshida, K Yasumoto; citation_volume=1; citation_publication_date=1987; citation_pages=71-75; citation_doi=10.1016/0889-1575(87)90013-5; citation_id=CR31
citation_journal_title=J Nutr Sci Vitaminol; citation_title=Dietary habits and selenium intake of residents in mountain and coastal communities in Japan; citation_author=Y Miyazaki, H Koyama, Y Sasada, H Satoh, M Nojiri, S Suzuki; citation_volume=50; citation_issue=309–319; citation_publication_date=2004; citation_pages=1; citation_doi=10.3177/jnsv.50.309; citation_id=CR32
citation_journal_title=Eur J Clin Nutr; citation_title=Dietary intake and urinary excretion of selenium in the Japanese adult population: the INTERMAP Study Japan; citation_author=S Yoneyama, K Miura, K Itai, K Yoshita, H Nakagawa, T Shimmura, A Okayama, K Sakata, S Saitoh, H Ueshima, P Elliott, J Stamler; citation_volume=62; citation_publication_date=2008; citation_pages=1187-1193; citation_doi=10.1038/sj.ejcn.1602842; citation_id=CR33
citation_journal_title=Food Sci Nutr; citation_title=Correlation between mineral intake and urinary excretion in free-living Japanese young women; citation_author=M Yoshida, T Fukuwatari, J Sakai, T Tsuji, K Shibata; citation_volume=3; citation_publication_date=2012; citation_pages=123-128; citation_doi=10.4236/fns.2012.31018; citation_id=CR34
citation_journal_title=Nutrients; citation_title=Biomarkers of selenium status; citation_author=GF Combs; citation_volume=31; citation_publication_date=2015; citation_pages=2209-2236; citation_doi=10.3390/nu7042209; citation_id=CR35
citation_journal_title=Clin Chim Acta; citation_title=Selenium in human urine: concentration levels and medical implications; citation_author=HJ Robberecht, HA Deelstra; citation_volume=136; citation_publication_date=1984; citation_pages=107-120; citation_doi=10.1016/0009-8981(84)90282-1; citation_id=CR36
citation_journal_title=Environ Int; citation_title=Urine selenium concentration is a useful biomarker for assessing population level selenium status; citation_author=FP Phiri, EL Ander, RM Lark, EH Bailey, B Chilima, J Gondwe, EJM Joy, AA Kalimbira, JC Phuka, PS Suchdev, DRS Middleton, EM Hamilton, MJ Watts, SD Young, MR Broadley; citation_volume=134; citation_publication_date=2020; citation_pages=105218; citation_doi=10.1016/j.envint.2019.105218; citation_id=CR37
citation_journal_title=J Anal At Spectrom; citation_title=Fast, simple and reliable routine determination of 23 elements in urine by ICP-MS; citation_author=P Heitland, HD Köster; citation_volume=19; citation_publication_date=2004; citation_pages=1552-1558; citation_doi=10.1039/b410630j; citation_id=CR38
citation_journal_title=Clin Chim Acta; citation_title=Biomonitoring of 30 trace elements in urine of children and adults by ICP-MS; citation_author=P Heitland, HD Köster; citation_volume=365; citation_publication_date=2006; citation_pages=310-318; citation_doi=10.1016/j.cca.2005.09.013; citation_id=CR39
citation_journal_title=Biol Trace Elem Res; citation_title=Influence of an acute exercise until exhaustion on serum and urinary concentrations of molybdenum, selenium, and zinc in athletes; citation_author=M Maynar, D Muñoz, J Alves, G Barrientos, FJ Grijota, MC Robles, F Llerena; citation_volume=186; citation_publication_date=2018; citation_pages=361-369; citation_doi=10.1007/s12011-018-1327-9; citation_id=CR40
citation_journal_title=Ann Clin Biochem; citation_title=Twenty-four-hour urinary trace element excretion: reference intervals and interpretive issues; citation_author=CE Sieniawska, LC Jung, R Olufadi, V Walker; citation_volume=49; citation_issue=Pt 4; citation_publication_date=2012; citation_pages=341-351; citation_doi=10.1258/acb.2011.011179; citation_id=CR41
citation_journal_title=Bull Environ Contam Toxicol; citation_title=Kawanishi Y (1990) Urinary selenium levels in Japanese males and females; citation_author=R Hasunuma, M Tsuda, T Ogawa; citation_volume=44; citation_publication_date=1990; citation_pages=501-507; citation_doi=10.1007/BF01700867; citation_id=CR42
citation_journal_title=J Toxicol Environ Health; citation_title=Selenium status in workers handling aromatic nitro-amino compounds in a chemical factory; citation_author=M Yoshida, M Sunaga, I Hara; citation_volume=31; citation_publication_date=1990; citation_pages=1-10; citation_doi=10.1080/15287399009531433; citation_id=CR43
citation_journal_title=Radiat Prot Dosimetry; citation_title=Modelling urinary excretion of molybdenum after oral and intravenous administration of stable tracers; citation_author=A Giussani, MC Cantone, V Höllriegl, U Oeh, F Tavola, I Veronese; citation_volume=127; citation_publication_date=2007; citation_pages=136-139; citation_doi=10.1093/rpd/ncm263; citation_id=CR44
citation_journal_title=Environ Int; citation_title=Associations of renal function with urinary excretion of metals: evidence from NHANES 2003–2012; citation_author=R Jin, X Zhu, MJ Shrubsole, C Yu, Z Xia, Q Dai; citation_volume=121; citation_issue=Pt 2; citation_publication_date=2018; citation_pages=1355-1362; citation_doi=10.1016/j.envint.2018.11.002; citation_id=CR45
citation_journal_title=Am J Clin Nutr; citation_title=Molybdenum absorption, excretion, and retention studied with stable isotopes in young men at five intakes of dietary molybdenum; citation_author=JR Turnlund, WR Keyes, GL Peiffer; citation_volume=62; citation_publication_date=1995; citation_pages=790-796; citation_doi=10.1093/ajcn/62.4.790; citation_id=CR46
citation_journal_title=J Nutr Sci Vitaminol; citation_title=Determination of molybdenum in foods and human milk, and an estimate of average molybdenum intake in the Japanese population; citation_author=H Hattori, A Ashida, C Itô, M Yoshida; citation_volume=50; citation_publication_date=2004; citation_pages=404-409; citation_doi=10.3177/jnsv.50.404; citation_id=CR47
citation_journal_title=J Trace Elem Med Biol; citation_title=Molybdenum balance in healthy young Japanese women; citation_author=M Yoshida, H Hattori, S Ota, K Yoshihara, N Kodama, Y Yoshitake, M Nishimuta; citation_volume=20; citation_publication_date=2006; citation_pages=245-252; citation_doi=10.1016/j.jtemb.2006.07.004; citation_id=CR48
citation_journal_title=Endocr J; citation_title=Iodine intake in healthy Japanese aged from 6 to 70 years residing in the same district; citation_author=Y Fuse, Y Ito, N Tsukada, Y Shishiba, M Irie; citation_volume=69; citation_publication_date=2022; citation_pages=253-262; citation_doi=10.1507/endocrj.EJ21-0479; citation_id=CR49
citation_title=Assessment of iodine deficiency disorders and monitoring their elimination; citation_publication_date=2007; citation_id=CR50; citation_publisher=WHO
citation_journal_title=J Clin Endocrinol Metab; citation_title=Current iodine status in Japan: a cross-sectional nationwide survey of schoolchildren, 2014–2019; citation_author=Y Fuse, Y Ito, Y Shishiba, M Irie; citation_volume=107; citation_publication_date=2021; citation_pages=e2065-e2079; citation_doi=10.1210/clinem/dgab919; citation_id=CR51
citation_journal_title=Nutrients; citation_title=Food group intakes as determinants of iodine status among US adult population; citation_author=KW Lee, D Shin, MS Mi Sook Cho, WO Song; citation_volume=8; citation_publication_date=2016; citation_pages=325; citation_doi=10.3390/nu8060325; citation_id=CR52
citation_journal_title=Exp Clin Endocrinol Diabetes; citation_title=Bioavailability of iodine from normal diets rich in dairy products-results of balance studies in women; citation_author=G Jahreis, W Hausmann, G Kiessling, K Franke, M Leiterer; citation_volume=109; citation_publication_date=2001; citation_pages=163-167; citation_doi=10.1055/s-2001-14840; citation_id=CR53
citation_journal_title=Br J Nutr; citation_title=Estimation of habitual iodine intake in Japanese adults using 16 d diet records over four seasons with a newly developed food composition database for iodine; citation_author=R Katagiri, K Asakura, S Sasaki, N Hirota, A Notsu, A Miura, H Todoriki, M Fukui, C Date; citation_volume=114; citation_publication_date=2015; citation_pages=624-634; citation_doi=10.1017/S0007114515002019; citation_id=CR54
citation_journal_title=J Trace Elem Med Biol; citation_title=An evaluation of urinary measures of iodine and selenium status; citation_author=CD Thomson, TE Smith, KA Butler, MA Packer; citation_volume=10; citation_publication_date=1996; citation_pages=214-222; citation_doi=10.1016/S0946-672X(96)80038-1; citation_id=CR55
citation_journal_title=Clin Sci (Lond); citation_title=Low selenium status in the elderly influences thyroid hormones; citation_author=O Olivieri, D Girelli, M Azzini, AM Stanzial, C Russo, M Ferroni, R Corrocher; citation_volume=89; citation_publication_date=1995; citation_pages=637-642; citation_doi=10.1042/cs0890637; citation_id=CR56
citation_journal_title=Analyst; citation_title=Correlations between parameters of body selenium status and peripheral thyroid parameters in the low selenium region; citation_author=J Kvícala, V Zamrazil, M Soutorová, F Tomíska; citation_volume=120; citation_publication_date=1995; citation_pages=959-965; citation_doi=10.1039/an9952000959; citation_id=CR57
citation_journal_title=Biol Trace Elem Res; citation_title=Iodine, selenium, and other trace elements in urine of pregnant women; citation_author=Z Szybiński, S Walas, P Zagrodzki, G Sokołowski, F Gołkowski, H Mrowiec; citation_volume=138; citation_publication_date=2010; citation_pages=28-41; citation_doi=10.1007/s12011-009-8601-9; citation_id=CR58
citation_journal_title=J Trace Elem Med Biol; citation_title=Urinary selenium and iodine during pregnancy and lactation; citation_author=CD Thomson, MA Packer, JA Butler, AJ Duffield, KL O'Donaghue, PD Whanger; citation_volume=14; citation_publication_date=2001; citation_pages=210-217; citation_doi=10.1016/S0946-672X(01)80004-33113773; citation_id=CR59
citation_journal_title=Proc Natl Acad Sci U S A; citation_title=Selenium deficiency risk predicted to increase under future climate change; citation_author=GD Jones, B Droz, P Greve, P Gottschalk, D Poffet, SP McGrath, SI Seneviratne, P Smith, LH Winkel; citation_volume=114; citation_publication_date=2017; citation_pages=2848-2853; citation_doi=10.1073/pnas.1611576114; citation_id=CR60
