Urinary and blood cadmium and lead and kidney function: NHANES 2007–2012

肾功能 肾毒性 泌尿系统 全国健康与营养检查调查 肌酐 四分位数 内科学 医学 排泄 内分泌学 生理学 化学 环境卫生 人口 置信区间 有机化学
作者
Melanie C. Buser,Susan Z. Ingber,Nathan H. Raines,David A. Fowler,Franco Scinicariello
出处
期刊:International Journal of Hygiene and Environmental Health [Elsevier BV]
卷期号:219 (3): 261-267 被引量:159
标识
DOI:10.1016/j.ijheh.2016.01.005
摘要

Cadmium (Cd) and lead (Pb) are widespread environmental contaminants that are known nephrotoxins. However, their nephrotoxic effects at low-environmental exposure levels are debated.We examined the association of blood Pb (B-Pb), blood Cd (B-Cd), urinary Pb (U-Pb) and urinary Cd (U-Cd) with estimated glomerular filtration rate (eGFR) and urinary albumin (ALB).We used multivariate linear regression to analyze the association between B-Pb, B-Cd, U-Pb, and U-Cd with eGFR and ALB in adult participants (≥20 years of age) in NHANES 2007-2012. The dataset was limited to NHANES individuals with both blood and urinary metal measurements.We found a statistically significant inverse association between eGFR and B-Cd and statistically significant positive associations between eGFR and both U-Cd and U-Pb, as well as statistically significant associations between ALB and the 3rd and 4th quartiles of U-Cd.The inverse association between eGFR and B-Cd, in conjunction with positive associations between eGFR and ALB with U-Cd, suggest that U-Cd measurement at low levels of exposure may result from changes in renal excretion of Cd due to kidney function and protein excretion. However, renal effects such as hyperfiltration from Cd-mediated kidney damage or creatinine-specific Cd effects cannot be excluded with this cross-sectional design.
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