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血清硒和硒蛋白在环境及职业暴露中对汞毒性的作用。

The roles of serum selenium and selenoproteins on mercury toxicity in environmental and occupational exposure.

作者信息

Chen Chunying, Yu Hongwei, Zhao Jiujiang, Li Bai, Qu Liya, Liu Shuiping, Zhang Peiqun, Chai Zhifang

机构信息

Laboratory of Nuclear Analytical Techniques and Laboratory for Nanoscale Materials and Related Bio-Environmental Sciences, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, People's Republic of China.

出版信息

Environ Health Perspect. 2006 Feb;114(2):297-301. doi: 10.1289/ehp.7861.

Abstract

Many studies have found that mercury (Hg) exposure is associated with selenium (Se) accumulation in vivo. However, human studies are limited. To study the interaction between Se and Hg, we investigated the total Se and Hg concentrations in body fluids and serum Se-containing proteins in individuals exposed to high concentrations of Hg. Our objective was to elucidate the possible roles of serum Se and selenoproteins in transporting and binding Hg in human populations. We collected data from 72 subjects: 35 had very low Hg exposure as evidenced by mean Hg concentrations of 0.91 and 1.25 ng/mL measured in serum and urine, respectively; 37 had high exposure (mean Hg concentrations of 38.5 and 86.8 ng/mL measured in serum and urine, respectively). An association between Se and Hg was found in urine (r = 0.625; p < 0.001) but not in serum. Hg exposure may affect Se concentrations and selenoprotein distribution in human serum. Expression of both selenoprotein P and glutathione peroxidase (GSH-Px) was greatly increased in Hg miners. These increases were accompanied by elevated Se concentrations in serum. In addition, selenoprotein P bound more Hg at higher Hg exposure concentrations. Biochemical observations revealed that both GSH-Px activity and malondialdehyde concentrations increased in serum of the Hg-exposed group. This study aids in the understanding of the interaction between Se and Hg. Selenoproteins play two important roles in protecting against Hg toxicity. First, they may bind more Hg through their highly reactive selenol group, and second, their antioxidative properties help eliminate the reactive oxygen species induced by Hg in vivo.

摘要

许多研究发现,汞(Hg)暴露与体内硒(Se)蓄积有关。然而,人体研究有限。为了研究硒与汞之间的相互作用,我们调查了高浓度汞暴露个体体液中的总硒和汞浓度以及血清含硒蛋白。我们的目的是阐明血清硒和硒蛋白在人群中运输和结合汞方面可能发挥的作用。我们收集了72名受试者的数据:35人汞暴露水平极低,血清和尿液中汞的平均浓度分别为0.91和1.25 ng/mL;37人汞暴露水平高(血清和尿液中汞的平均浓度分别为38.5和86.8 ng/mL)。在尿液中发现了硒与汞之间的关联(r = 0.625;p < 0.001),但血清中未发现。汞暴露可能会影响人体血清中的硒浓度和硒蛋白分布。汞矿工体内硒蛋白P和谷胱甘肽过氧化物酶(GSH-Px)的表达均大幅增加。这些增加伴随着血清中硒浓度的升高。此外,在较高的汞暴露浓度下,硒蛋白P结合了更多的汞。生化观察表明,汞暴露组血清中的GSH-Px活性和丙二醛浓度均升高。这项研究有助于理解硒与汞之间的相互作用。硒蛋白在预防汞毒性方面发挥着两个重要作用。首先,它们可能通过其高反应性的硒醇基团结合更多的汞,其次,它们的抗氧化特性有助于消除体内汞诱导的活性氧。

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