首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Application of in vitro cell transformation assays to predict the carcinogenic potential of chemicals.
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Application of in vitro cell transformation assays to predict the carcinogenic potential of chemicals.

机译:体外细胞转化试验在预测化学物质致癌潜力中的应用。

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摘要

Genotoxicity test batteries have become a standard fool for identifying chemicals that may have potential carcinogenic risk to humans. It is now apparent, however, that the use of genotoxicity batteries for assessing carcinogenic potential has limitations including an overall low specificity and a limited ability to detect carcinogens acting via 'nongenotoxic' mechanisms. In vitro cell transformation models, because they measure a chemical's ability to induce preneoplastic or neoplastic endpoints regardless of mechanism, may fulfil the current need for an in vitro biologically relevant model with increased predictiveness for determining carcinogenic potential. This review will focus on data demonstrating the similarities of chemically induced cell transformation in vitro to carcinogenesis in vivo. Furthermore, a growing database demonstrating a high overall correlation between cell transformation results with those of the rodent bioassay will also be discussed. Finally, the inclusion of cell transformation approaches for assessing the carcinogenic potential of chemicals relative to currently used genotoxicity batteries will be presented.
机译:遗传毒性测试电池已经成为识别可能对人类潜在致癌危险的化学物质的标准傻瓜。但是,现在很明显,使用遗传毒性电池评估致癌潜力存在局限性,包括总体特异性低以及检测通过“非遗传毒性”机制起作用的致癌物的能力有限。体外细胞转化模型可以测量化学物质诱导前肿瘤或肿瘤终点的能力,而不论其机制如何,因此可以满足目前对体外生物相关模型的需求,该模型具有确定致癌潜力的增强预测能力。这篇综述将集中于证明体外化学诱导的细胞转化与体内致癌作用相似的数据。此外,还将讨论一个不断发展的数据库,该数据库表明细胞转化结果与啮齿动物生物测定的结果之间具有较高的总体相关性。最后,将介绍用于评估化学品相对于目前使用的遗传毒性电池的致癌潜力的细胞转化方法。

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