References
- Jarup, L. (2003) Hazards of heavy metal contamination. Br. Med. Bull., 68, 167-82. https://doi.org/10.1093/bmb/ldg032
- Tchounwou, P.B., Yedjou, C.G., Patlolla, A.K. and Sutton, D.J. (2012) Heavy metal toxicity and the environment. EXS, 101, 133-164.
- Christensen, J.M. (1995) Human exposure to toxic metals: factors influencing interpretation of biomonitoring results. Sci. Total Environ., 166, 89-135. https://doi.org/10.1016/0048-9697(95)04478-J
- Goyer, R.A. (1995) Nutrition and metal toxicity. Am. J. Clin. Nutr., 61, 646S-650S. https://doi.org/10.1093/ajcn/61.3.646S
- Nordberg, G.F., Fowler, B.A. and Nordberg, M. (2014). Handbook on the Toxicology of Metals, Academic Press.
- Kayaalti, Z., Aliyev, V. and Soylemezoglu, T. (2011) The potential effect of metallothionein 2A-5A/G single nucleotide polymorphism on blood cadmium, lead, zinc and copper levels. Toxicol. Appl. Pharmacol., 256, 1-7. https://doi.org/10.1016/j.taap.2011.06.023
- Rentschler, G., Kippler, M., Axmon, A., Raqib, R., Ekstrom, E.C., Skerfving, S., Vahter, M. and Broberg, K. (2013) Polymorphisms in iron homeostasis genes and urinary cadmium concentrations among nonsmoking women in Argentina and Bangladesh. Environ. Health Perspect., 121, 467-472.
- Bjorkman, L., Vahter, M. and Pedersen, N.L. (2000) Both the environment and genes are important for concentrations of cadmium and lead in blood. Environ. Health Perspect., 108, 719-722. https://doi.org/10.1289/ehp.00108719
- Kim, N.S. and Lee, B.K. (2011) National estimates of blood lead, cadmium, and mercury levels in the Korean general adult population. Int. Arch. Occup. Environ. Health, 84, 53-63. https://doi.org/10.1007/s00420-010-0522-6
- Kim, N.Y., Ahn, S.J., Ryu, D.Y., Choi, B.S., Kim, H., Yu, I.J. and Park, J.D. (2013) Effect of lifestyles on the blood mercury level in Korean adults. Hum. Exp. Toxicol., 32, 591-599. https://doi.org/10.1177/0960327112467041
- Lee, H.S., Cho, Y.H., Park, S.O., Kye, S.H., Kim, B.H., Hahm, T.S., Kim, M., Lee, J.O. and Kim, C.I. (2006) Dietary exposure of the Korean population to arsenic, cadmium, lead and mercury. J. Food Compost. Anal., 19, S31-S37. https://doi.org/10.1016/j.jfca.2005.10.006
- Eom, S.Y., Choi, S.H., Ahn, S.J., Kim, D.K., Kim, D.W., Lim, J.A., Choi, B.S., Shin, H.J., Yun, S.W., Yoon, H.J., Kim, Y.M., Hong, Y.S., Yun, Y.W., Sohn, S.J., Kim, H., Park, K.S., Pyo, H.S., Kim, H., Oh, S.Y., Kim, J., Lee, S.A., Ha, M., Kwon, H.J. and Park, J.D. (2014) Reference levels of blood mercury and association with metabolic syndrome in Korean adults. Int. Arch. Occup. Environ. Health, 87, 501-513. https://doi.org/10.1007/s00420-013-0891-8
- Welter, D., MacArthur, J., Morales, J., Burdett, T., Hall, P., Junkins, H., Klemm, A., Flicek, P., Manolio, T., Hindorff, L. and Parkinson, H. (2014) The NHGRI GWAS Catalog, a curated resource of SNP-trait associations. Nucleic Acids Res., 42, D1001-D1006. https://doi.org/10.1093/nar/gkt1229
- Yu, W., Gwinn, M., Clyne, M., Yesupriya, A. and Khoury, M.J. (2008) A navigator for human genome epidemiology. Nat. Genet., 40, 124-125. https://doi.org/10.1038/ng0208-124
- Kang, H.J., Choi, K.O., Kim, B.D., Kim, S. and Kim, Y.J. (2005) FESD: a Functional element SNPs database in human. Nucleic Acids Res., 33, D518-D522.
- Wright, S. (1978) Evolution and the Genetics of Populations, Vol. 4: Variability Within and Among Natural Populations, University of Chicago Press, Chicago.
- Ryu, H.J., Jung, H.Y., Park, J.S., Ryu, G.M., Heo, J.Y., Kim, J.J., Moon, S.M., Kim, H.T., Lee, J.Y., Koh, I., Kim, J.W., Rho, J.K., Han, B.G., Kim, H., Park, C.S., Oh, B., Park, C., Lee, J.K. and Kimm, K. (2006) Gene-based single nucleotide polymorphisms and linkage disequilibrium patterns of 29 asthma candidate genes in the chromosome 5q31-33 region in Koreans. Int. Arch. Allergy Immunol., 139, 209-216. https://doi.org/10.1159/000091166
- Kim, I.W., Kim, K.I., Chang, H.J., Yeon, B., Bang, S.J., Park, T., Kwon, J.S., Kim, S. and Oh, J.M. (2012) Ethnic variability in the allelic distribution of pharmacogenes between Korean and other populations. Pharmacogenet. Genomics, 22, 829-836. https://doi.org/10.1097/FPC.0b013e328358dd70
- Mori, M., Yamada, R., Kobayashi, K., Kawaida, R. and Yamamoto, K. (2005) Ethnic differences in allele frequency of autoimmune-disease-associated SNPs. J. Hum. Genet., 50, 264-266. https://doi.org/10.1007/s10038-005-0246-8
- Collins, F.S., Green, E.D., Guttmacher, A.E. and Guyer, M.S. (2003) A vision for the future of genomics research. Nature, 422, 835-847. https://doi.org/10.1038/nature01626
- Hightower, J.M., O'Hare, A. and Hernandez, G.T. (2006) Blood mercury reporting in NHANES: identifying Asian, Pacific Islander, Native American, and multiracial groups. Environ. Health Perspect., 114, 173-175. https://doi.org/10.1289/ehp.8464
- McKelvey, W., Gwynn, R.C., Jeffery, N., Kass, D., Thorpe, L.E., Garg, R.K., Palmer, C.D. and Parsons, P.J. (2007) A biomonitoring study of lead, cadmium, and mercury in the blood of New York city adults. Environ. Health Perspect., 115, 1435-1441.
- CDC (2015) Fourth National Report on Human Exposure to Environmental Chemicals: Updated Tables, Centers for Disease Control and Prevention, Atlanta, pp. 156-287.
-
Porter, K.E., Basu, A., Hubbard, A.E., Bates, M.N., Kalman, D., Rey, O., Smith, A., Smith, M.T., Steinmaus, C. and Skibola, C.F. (2010) Association of genetic variation in cystathionine-
${\beta}$ -synthase and arsenic metabolism. Environ. Res., 110, 580-587. https://doi.org/10.1016/j.envres.2010.05.001 - Tseng, C.H. (2009) A review on environmental factors regulating arsenic methylation in humans. Toxicol. Appl. Pharmacol., 235, 338-350. https://doi.org/10.1016/j.taap.2008.12.016
- Steinmaus, C., Yuan, Y., Kalman, D., Rey, O.A., Skibola, C.F., Dauphine, D., Basu, A., Porter, K.E., Hubbard, A., Bates, M.N., Smith, M.T. and Smith, A.H. (2010) Individual differences in arsenic metabolism and lung cancer in a case-control study in Cordoba, Argentina. Toxicol. Appl. Pharmacol., 247, 138-145. https://doi.org/10.1016/j.taap.2010.06.006
- Fu, S., Wu, J., Li, Y., Liu, Y., Gao, Y., Yao, F., Qiu, C., Song, L., Wu, Y., Liao, Y. and Sun, D. (2014) Urinary arsenic metabolism in a Western Chinese population exposed to highdose inorganic arsenic in drinking water: influence of ethnicity and genetic polymorphisms. Toxicol. Appl. Pharmacol., 274, 117-123. https://doi.org/10.1016/j.taap.2013.11.004
- Tanaka, T., Roy, C.N., Yao, W., Matteini, A., Semba, R.D., Arking, D., Walston, J.D., Fried, L.P., Singleton, A., Guralnik, J., Abecasis, G.R., Bandinelli, S., Longo, D.L. and Ferrucci, L. (2010) A genome-wide association analysis of serum iron concentrations. Blood, 115, 94-96. https://doi.org/10.1182/blood-2009-07-232496
- Huang, Y.C., Lin, J.M., Lin, H.J., Chen, C.C., Chen, S.Y., Tsai, C.H. and Tsai, F.J. (2011) Genome-wide association study of diabetic retinopathy in a Taiwanese population. Ophthalmology, 118, 642-648. https://doi.org/10.1016/j.ophtha.2010.07.020
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