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Sensitive CometChip assay for screening potentially carcinogenic DNA adducts by trapping DNA repair intermediates

机译:灵敏的CometChip检测通过捕获DNA修复中间体来筛选潜在致癌的DNA加合物

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摘要

Genotoxicity testing is critical for predicting adverse effects of pharmaceutical, industrial, and environmental chemicals. The alkaline comet assay is an established method for detecting DNA strand breaks, however, the assay does not detect potentially carcinogenic bulky adducts that can arise when metabolic enzymes convert pro-carcinogens into a highly DNA reactive products. To overcome this, we use DNA synthesis inhibitors (hydroxyurea and 1-β- -arabinofuranosyl cytosine) to trap single strand breaks that are formed during nucleotide excision repair, which primarily removes bulky lesions. In this way, comet-undetectable bulky lesions are converted into comet-detectable single strand breaks. Moreover, we use HepaRG™ cells to recapitulate metabolic capacity, and leverage the CometChip platform (a higher throughput more sensitive comet assay) to create the ‘HepaCometChip’, enabling the detection of bulky genotoxic lesions that are missed by current genotoxicity screens. The HepaCometChip thus provides a broadly effective approach for detection of bulky DNA adducts.
机译:遗传毒性测试对于预测制药,工业和环境化学品的不良影响至关重要。碱性彗星测定法是一种检测DNA链断裂的既定方法,但是,该方法不能检测到当代谢酶将促癌物转化为高度DNA反应性产物时可能产生的潜在致癌的大分子加合物。为了克服这个问题,我们使用DNA合成抑制剂(羟基脲和1-β-呋喃糖基胞嘧啶胞嘧啶)来捕获在核苷酸切除修复过程中形成的单链断裂,该断裂主要去除了大体积的病变。这样,无法将彗星检测到的大块病变转变为可彗星检测到的单链断裂。此外,我们使用HepaRG™细胞来增强新陈代谢的能力,并利用CometChip平台(吞吐量更高,更灵敏的彗星测定法)来创建“ HepaCometChip”,从而能够检测出当前遗传毒性筛查所遗漏的巨大遗传毒性病变。因此,HepaCometChip为检测庞大的DNA加合物提供了广泛有效的方法。

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