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An investigation of the health effects caused by exposure to arsenic from drinking water and coal combustion: arsenic exposure and metabolism

机译:饮用水和煤炭燃烧暴露于砷的健康效应调查:砷接触和新陈代谢

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摘要

Few studies have been conducted to compare arsenic exposure, metabolism, and methylation in populations exposed to arsenic in drinking water and from coal combustion. Therefore, arsenic concentrations in the environment and arsenic speciation in the urine of subjects exposed to arsenic as a consequence of coal combustion in a rural area in Shaanxi province (CCA) and in drinking water in a rural area in Inner Mongolia (DWA) were investigated. The mean arsenic concentrations in drinking water, indoor air, and soil in CCA were 4.52 mu g/L, 0.03 mg/m(3), and 14.93 mg/kg, respectively. The mean arsenic concentrations in drinking water and soil in DWA were 144.71 mu g/L and 10.19 mg/kg, respectively, while the level in indoor air was lower than the limit of detection. The total daily intakes of arsenic in DWA and CCA were 4.47 and 3.13 mu g/day.kg, respectively. The mean urinary concentrations of inorganic arsenic (iAs), monomethylarsonic acid (MMA), dimethylarsenic acid (DMA), and total arsenic (TAs) for subjects with skin lesions in DWA were 50.41, 47.01, 202.66, and 300.08 mu g/L. The concentrations for subjects without skin lesions were 49.76, 44.20, 195.60, and 289.56 mu g/L, respectively. The %iAs, %MMA, and %DMA in the TAs in the urine of subjects from CCA were 12.24, 14.73, and 73.03%, while the corresponding values from DWA were 17.54, 15.57, and 66.89%, respectively. The subjects in DWA typically had a higher %iAs and %MMA, and a lower %DMA, and primary and secondary methylation index (PMI and SMI) than the subjects in CCA. It was concluded that the arsenic methylation efficiency of subjects in DWA and CCA was significantly influenced by chronic exposure to high levels of arsenic in the environment. The lower PMI and SMI values in DWA revealed lower arsenic methylation capacity due to ingestion of arsenic in drinking water. However, it remained unclear if the differences in arsenic metabolism between the two groups were due to differences in exposure levels or in exposure route.
机译:很少有研究已经进行到比较砷暴露,代谢和甲基化在饮用水和燃煤砷暴露人群。因此,砷浓度的砷暴露在陕西省(CCA)的农村地区煤燃烧的结果受试者尿液中的环境和砷形态和内蒙古(DWA)的农村地区的饮用水进行了调查。平均的砷浓度在CCA饮用水,室内空气和土壤为4.52亩克/升,0.03毫克/米(3),以及,14.93毫克/千克分别。平均的砷浓度在DWA饮用水和土壤为144.71亩克/ L和10.19毫克/千克,而在室内空气中的水平低于检测的下限。在DWA CCA和砷的总日摄入量4.47和3.13克亩/ day.kg,分别。平均尿浓度的无机砷(IAS),单甲基丙烯酸(MMA),二甲基胂酸(DMA),和总砷(TAS),用于在DWA皮损受试者50.41,47.01,202.66和300.08亩克/升。没有皮肤损伤的受试者的浓度为49.76,44.20,195.60,和289.56亩克/升,分别。的%中iAs,%MMA和DMA%在受试者的尿从CCA在助教为12.24,14.73,73.03和%,而从DWA相应值分别为17.54,15.57,66.89和%分别。在DWA受试者典型地具有比在CCA受试者更高%IAS和%MMA,和下部%的DMA,并且初级和次级甲基化指数(PMI和SMI)。得出的结论是在DWA和CCA科目砷甲基效率显著通过长期暴露于环境中的高浓度砷的影响。在DWA较低的PMI和SMI值由于饮用水中的砷摄入透露下砷甲基能力。然而,它仍不清楚,如果在两组间砷代谢差异是由于在暴露水平或接触途径的差异。

著录项

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  • 作者单位

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat 11 A Datun Rd Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat 11 A Datun Rd Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat 11 A Datun Rd Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat 11 A Datun Rd Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat 11 A Datun Rd Beijing 100101 Peoples R China;

    Inner Mongolia Ctr Dis Control &

    Res Hohhot Peoples R China;

    Inner Mongolia Ctr Dis Control &

    Res Hohhot Peoples R China;

    Inner Mongolia Ctr Dis Control &

    Res Hohhot Peoples R China;

    Inner Mongolia Ctr Dis Control &

    Res Hohhot Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;环境科学、安全科学;
  • 关键词

    Arsenic; Metabolism; Methylation; Drinking water; Coal combustion;

    机译:砷;新陈代谢;甲基化;饮用水;煤燃烧;

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