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Blood Cadmium Concentration of Residents Living Near Abandoned Metal Mines in Korea

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Specialty General Medicine
Date 2014 May 23
PMID 24851017
Citations 3
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Abstract

The purpose of this study was to investigate demographic and lifestyle variables and blood cadmium concentrations in residents living near abandoned metal mines in Korea. Blood cadmium concentrations were measured in 15,161 subjects living around abandoned metal mines (exposed group, n = 14,464) and compared with those living in designated control areas (control group, n = 697). A questionnaire was provided to all subjects to determine age, gender, mine working history, times of residence, smoking habits and dietary water type. The geometric mean (95% confidence intervals) of blood cadmium concentration (1.25 [1.24-1.27] µg/L) in the exposed group was significantly higher than in the control group (1.17 [1.13-1.22] µg/L). Mean residence time and mine working history in the exposed group were significantly higher than in the control group. Blood cadmium concentrations increased with increasing age, and residence time in both groups, and blood cadmium concentrations were higher in current-smokers than in non-smokers in both groups. This study shows the geometric mean of blood cadmium concentration in abandoned mining areas are higher than in non-mining areas in the general adult Korean population.

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References
1.
Flanagan P, McLellan J, Haist J, Cherian G, Chamberlain M, VALBERG L . Increased dietary cadmium absorption in mice and human subjects with iron deficiency. Gastroenterology. 1978; 74(5 Pt 1):841-6. View

2.
Kim N, Sakong J, Choi J, Hong Y, Moon J, Lee B . Blood lead levels of residents living around 350 abandoned metal mines in Korea. Environ Monit Assess. 2011; 184(7):4139-49. DOI: 10.1007/s10661-011-2250-0. View

3.
Becker K, Kaus S, Krause C, Lepom P, Schulz C, Seiwert M . German Environmental Survey 1998 (GerES III): environmental pollutants in blood of the German population. Int J Hyg Environ Health. 2002; 205(4):297-308. DOI: 10.1078/1438-4639-00155. View

4.
Wilhelm M, Ewers U, Schulz C . Revised and new reference values for some trace elements in blood and urine for human biomonitoring in environmental medicine. Int J Hyg Environ Health. 2004; 207(1):69-73. DOI: 10.1078/1438-4639-00260. View

5.
Zhang Z, Moon C, Watanabe T, Shimbo S, He F, Wu Y . Background exposure of urban populations to lead and cadmium: comparison between China and Japan. Int Arch Occup Environ Health. 1997; 69(4):273-81. DOI: 10.1007/s004200050147. View