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首页> 外文期刊>The Science of the Total Environment >Epidemiological study of kidney health in an area with high levels of soil cadmium and selenium: Does selenium protect against cadmium-induced kidney injury?
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Epidemiological study of kidney health in an area with high levels of soil cadmium and selenium: Does selenium protect against cadmium-induced kidney injury?

机译:镉和硒含量高的地区肾脏健康的流行病学研究:硒是否可以预防镉引起的肾脏损伤?

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摘要

Chronic exposure to cadmium (Cd) can cause renal dysfunction. Studies of animals, cell cultures, and plants have found that selenium (Se) can effectively alleviate the hazard generated by Cd, but there has been little study of this in general human populations. This study recruited 313 subjects from China's Hubei Province, including 160 living in areas with high soil Cd and Se (exposure group) and 153 living in clean areas (control group). The levels of the following were detected: Cd and Se in blood (B-Cd and B-Se), mine (U-Cd and U-Se), and hair (H-Cd and H-Se); N-acetyl-beta-D-glucosaminidase (U-NAG), beta(2)-microglobulin (U-beta(2)-MG), and albumin (U-ALB) in urine; and malondialdehyde (S-MDA), superoxide dismutase (S-SOD), and glutathione peroxidase (S-GSHPx) in serum. In addition, the interactions between Cd and Se were assessed. The median levels of B-Cd, B-Se, U-Cd, U-Se, H-Cd, H-Se, S-MDA, and S-GSH-Px of exposure group (2.60 ng/mL, 238.90 ng/mL, 3.13 mu g/g Cr, 45.43 mu g/g Cr, 0.06 mu g/g, 0.70 mu g/g, 522 nmol/mL, and 308.89 U, respectively) were significantly higher than of controls (0.95 ng/mL, 130.50 ng/mL, 1.08 mu g/g Cr, 30.51 mu g/g Cr, 0.04 mu g/g, 0.49 mu g/g, 4.71 nmol/mL, and 26754 U, respectively), but there were no significant differences in U-NAG, U-beta(2)-MG, U-ALB, or S-SOD between the two groups. U-NAG levels were significantly negatively associated with the interaction between Cd and Se (B: -0.511. 95%CI: -0.886, -0.136). Additionally, changes in the direction of the estimated regression coefficient in the low and high H-Se groups were observed for U-Cd and S-MDA (from 0.018 to -0.090), U-Cd and S-GSH-Px (from -0.039 to 0.101). This study found that populations living in areas with high levels of soil Cd and se did not show greater Cd-induced renal tubular and glomerular injuries than the control population, which could attribute to the protective effects of Se. The protective effects may be related to the peculiar function of Se that Se can combine with free Cd to activate the antioxidant enzyme system. (C) 2019 Elsevier B.V. All rights reserved.
机译:长期暴露于镉(Cd)会导致肾功能障碍。对动物,细胞培养物和植物的研究发现,硒(Se)可以有效减轻Cd产生的危害,但在普通人群中对此的研究很少。这项研究从中国湖北省招募了313名受试者,其中160名居住在土壤镉和硒含量高的地区(暴露组),另外153名居住在清洁区(对照组)。检测到以下含量:血液中的镉和硒(B-Cd和B-Se),矿物质(U-Cd和U-Se)和头发(H-Cd和H-Se);尿中的N-乙酰基-β-D-氨基葡萄糖苷酶(U-NAG),β(2)-微球蛋白(U-beta(2)-MG)和白蛋白(U-ALB);以及血清中的丙二醛(S-MDA),超氧化物歧化酶(S-SOD)和谷胱甘肽过氧化物酶(S-GSHPx)。此外,评估了镉和硒之间的相互作用。暴露组的B-Cd,B-Se,U-Cd,U-Se,H-Cd,H-Se,S-MDA和S-GSH-Px的中位数水平(2.60 ng / mL,238.90 ng / mL,3.13μg/ g Cr,45.43μg/ g Cr,0.06μg/ g,0.70μg/ g,522 nmol / mL和308.89 U)分别显着高于对照组(0.95 ng / mL) ,130.50 ng / mL,1.08μg/ g Cr,30.51μg/ g Cr,0.04μg/ g,0.49μg/ g,4.71 nmol / mL和26754 U),但无显着差异在两组之间的U-NAG,U-beta(2)-MG,U-ALB或S-SOD中。 U-NAG水平与Cd和Se之间的相互作用显着负相关(B:-0.511。95%CI:-0.886,-0.136)。此外,对于U-Cd和S-MDA(从0.018到-0.090),U-Cd和S-GSH-Px(从-开始),在低H-Se组和高H-Se组中估计的回归系数方向发生了变化。 0.039至0.101)。这项研究发现,生活在土壤中Cd和Se含量高的地区的人群没有显示出Cd引起的肾小管和肾小球损伤程度高于对照组,这可能归因于Se的保护作用。保护作用可能与硒的特殊功能有关,硒可以与游离镉结合以激活抗氧化酶系统。 (C)2019 Elsevier B.V.保留所有权利。

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