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Health effects and arsenic species in urine of copper smelter workers

机译:铜冶炼厂工人尿液中的健康影响和砷种类

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The aim of this study was to compare indices of exposure in workers employed at different work posts in a copper smelter plant using neurophysiological tests and to evaluate the relationship between urinary arsenic species with the aid of sensitive respiratory and renal biomarkers. We have attempted to elucidate the impact of different arsenic speciation forms on the observed health effects. We focused on the workers (n = 45) exposed to atmospheres containing specific diverse mixtures of metals (such as those occurring in Departments of Furnaces, Lead and Electrolysis) compared to controls (n = 16). Subjective symptoms from the central (CNS) and the peripheral (PNS) nervous system were recorded and visual evoked potential (VEP), electroneurography (ENeG) and electroencephalography (EEG) curves were analysed. Levels of airborne lead (PbA), zinc (ZnA) and copper (CuA) and Pb levels in blood (PbB) and the relationships between airborne As concentrations (AsA) and the urinary levels of the inorganic (iAs); As(+3), As(+5) and the organic; methylarsonate (MMA(V)), dimethylarsinate (DMA(V)) and arsenobetaine (AsB) arsenic species were determined by Inductively Coupled Plasma Mass Spectrometry (ICP-MS). Effects of exposure were expressed in terms of biomarker levels: Clara cell protein (CC16) in serum as early pulmonary biomarker and β_2-microglobulin (β_2M) in urine and serum, retinol binding protein (RBP) as renal markers, measured by sensitive latex-immunoassay (LIA). Abnormal results of neurophysiological tests, VEP, EEG and ENeG showed dominant subclinical effects in CNS and PNS of workers from Departments of Lead and Furnace. In group of smelters from Departments of Furnace exposed to arsenic above current TLV, excreted arsenic species As(+3) and As(+5) seemed to reduce the level of Clara cell protein (CC16), thereby reducing anti-inflammatory potential of the lungs and increasing the levels of renal biomarker (β_2M) and copper in urine (CuU). The study confirmed deleterious arsenic effects to the kidney by increased levels of low-molecular weight protein in urine and the extent of the renal copper accumulation/excretion. The results of our work also support the usefulness of application of the sensitive neurophysiologic tests, such as VEP, EEG and ENeG, for the detection of early subclinical effects of the exposure of the nervous system in copper smelters.
机译:这项研究的目的是使用神经生理学测试比较铜冶炼厂不同工作岗位的工人的暴露指数,并借助敏感的呼吸和肾脏生物标记物评估尿中砷种类之间的关系。我们试图阐明不同形态的砷对观察到的健康影响的影响。与对照组(n = 16)相比,我们集中研究了暴露于含有特定的多种金属混合物(例如在熔炉,铅和电解系中发生的金属)的大气中的工人(n = 45)。记录中枢神经系统(CNS)和周围神经系统(PNS)的主观症状,并分析视觉诱发电位(VEP),神经电图(ENeG)和脑电图(EEG)曲线。空气中铅(PbA),锌(ZnA)和铜(CuA)的水平以及血液中铅(PbB)的水平以及空气中砷的浓度(AsA)与无机尿(iAs)之间的关系; As(+3),As(+5)和有机物;通过电感耦合等离子体质谱法(ICP-MS)确定砷酸甲酯(MMA(V)),砷酸二甲酯(DMA(V))和砷基甜菜碱(AsB)的砷种类。暴露的影响以生物标志物水平表示:血清中的克拉拉细胞蛋白(CC16)作为早期肺部生物标志物,尿液和血清中的β_2-微球蛋白(β_2M),肾素中的视黄醇结合蛋白(RBP)(通过敏感的乳胶-免疫测定(LIA)。神经生理学测试,VEP,EEG和ENeG的异常结果显示,铅和熔炉部门的工人在CNS和PNS中具有主要的亚临床作用。在炉部门暴露于高于当前TLV的砷的冶炼厂组中,排出的砷物质As(+3)和As(+5)似乎会降低Clara细胞蛋白(CC16)的水平,从而降低其抗炎性肺和增加肾脏生物标志物(β_2M)和尿液中铜(CuU)的水平。这项研究证实了尿中低分子量蛋白质水平的升高以及肾脏铜积累/排泄的程度对砷具有有害的肾脏作用。我们的工作结果还支持应用敏感的神经生理学测试(例如VEP,EEG和ENeG)来检测铜冶炼厂中神经系统暴露的早期亚临床效应。

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