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Toenail Chromium Concentration and Metabolic Syndrome Among Korean Adults

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Publisher MDPI
Date 2018 Apr 5
PMID 29617349
Citations 7
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Abstract

Although in vivo and in vitro studies have shown that chromium has protective effects against metabolic diseases, few studies have examined this association in humans. The present study examined chronic chromium (Cr) exposure among Koreans based on the measurement of toenail Cr concentrations, and analyzed the associations between toenail Cr concentrations and metabolic syndrome (MetS) and its components. We conducted a cross-sectional analysis using baseline data from the prospective cohort study in the Yeungnam area of South Korea that included 232 men and 268 women. Toenail Cr concentration was quantified by neutron activation analysis, and metabolic biomarker levels were obtained through medical examinations. The odd ratios (OR) of prevalent MetS and its components in correlation with Cr concentrations were calculated using multivariable logistic regression. After multiple confounding variables were adjusted for, participants with higher concentrations of Cr had a prevalence rate of MetS similar to those with lower concentrations (OR, 1.84; 95% confidence interval, 0.65-5.23). Our results do not support an association between long-term exposure to Cr and a lower prevalence of MetS in Koreans, whose Cr concentrations are relatively low compared to those of populations in Europe and the United States.

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References
1.
Lim S, Shin H, Song J, Kwak S, Kang S, Yoon J . Increasing prevalence of metabolic syndrome in Korea: the Korean National Health and Nutrition Examination Survey for 1998-2007. Diabetes Care. 2011; 34(6):1323-8. PMC: 3114326. DOI: 10.2337/dc10-2109. View

2.
Sani A, Abdullahi I . Evaluation of some heavy metals concentration in body fluids of metal workers in Kano metropolis, Nigeria. Toxicol Rep. 2017; 4:72-76. PMC: 5615094. DOI: 10.1016/j.toxrep.2017.01.001. View

3.
Glinsmann W, Mertz W . Effect of trivalent chromium on glucose tolerance. Metabolism. 1966; 15(6):510-20. DOI: 10.1016/0026-0495(66)90111-9. View

4.
Yin R, Phung O . Effect of chromium supplementation on glycated hemoglobin and fasting plasma glucose in patients with diabetes mellitus. Nutr J. 2015; 14:14. PMC: 4430034. DOI: 10.1186/1475-2891-14-14. View

5.
Guallar E, Jimenez F, van t Veer P, Bode P, Riemersma R, Gomez-Aracena J . Low toenail chromium concentration and increased risk of nonfatal myocardial infarction. Am J Epidemiol. 2005; 162(2):157-64. DOI: 10.1093/aje/kwi180. View