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Arsenic Exposure Is Associated with Decreased DNA Repair in Vitro and in Individuals Exposed to Drinking Water Arsenic

机译:砷暴露与体外和个体暴露于饮用水中的砷的DNA修复能力下降有关

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摘要

The mechanism(s) by which arsenic exposure contributes to human cancer risk is unknown; however, several indirect cocarcinogenesis mechanisms have been proposed. Many studies support the role of As in altering one or more DNA repair processes. In the present study we used individual-level exposure data and biologic samples to investigate the effects of As exposure on nucleotide excision repair in two study populations, focusing on the excision repair cross-complement 1 (ERCC1) component. We measured drinking water, urinary, or toenail As levels and obtained cryopreserved lymphocytes of a subset of individuals enrolled in epidemiologic studies in New Hampshire (USA) and Sonora (Mexico). Additionally, in corroborative laboratory studies, we examined the effects of As on DNA repair in a cultured human cell model. Arsenic exposure was associated with decreased expression of ERCC1 in isolated lymphocytes at the mRNA and protein levels. In addition, lymphocytes from As-exposed individuals showed higher levels of DNA damage, as measured by a comet assay, both at baseline and after a 2-acetoxyacetylaminofluorene (2-AAAF) challenge. In support of the in vivo data, As exposure decreased ERCC1 mRNA expression and enhanced levelsof DNA damage after a 2-AAAF challenge in cell culture. These data providefurther evidence to support the ability of As to inhibit the DNArepair machinery, which is likely to enhance the genotoxicity and mutagenicityof other directly genotoxic compounds, as part of a cocarcinogenicmechanism of action.
机译:砷暴露导致人类癌症风险的机制尚不清楚;然而,已经提出了几种间接的致癌作用机理。许多研究支持砷在改变一种或多种DNA修复过程中的作用。在本研究中,我们使用了个体水平的暴露数据和生物学样本来研究砷暴露对两个研究人群中核苷酸切除修复的影响,重点是切除修复交叉互补1(ERCC1)组件。我们测量了饮用水,尿液或脚趾甲的含量,并获得了在新罕布什尔州(美国)和索诺拉州(墨西哥)进行的流行病学研究的一部分个体的冷冻保存的淋巴细胞。此外,在确证实验室研究中,我们研究了砷对培养的人细胞模型中DNA修复的影响。砷暴露与mRNA和蛋白质水平的分离淋巴细胞中ERCC1的表达降低有关。此外,暴露于砷的个体的淋巴细胞在基线和2-乙酰氧基乙酰基氨基芴(2-AAAF)攻击后均显示出较高水平的DNA损伤,如通过彗星试验测定的。为了支持体内数据,暴露可降低ERCC1 mRNA表达并提高其水平细胞培养中2-AAAF攻击后DNA的损伤这些数据提供进一步的证据支持As抑制DNA的能力修复机制,可能会增强遗传毒性和诱变性其他直接的遗传毒性化合物,作为致癌物质的一部分作用机理。

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