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The development and prevalidation of an in vitro mutagenicity assay based on MutaMouse primary hepatocytes, Part II: Assay performance for the identification of mutagenic chemicals

机译:基于Mutamouse Prial Heptocytes的体外诱变测定的开发和预验证,第二部分:测定诱变化学品鉴定的测定性能

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As demonstrated in Part I, cultured MutaMouse primary hepatocytes (PHs) are suitable cells for use in an in vitro gene mutation assay due to their metabolic competence, their "normal" phenotype, and the presence of the MutaMouse transgene for reliable mutation scoring. The performance of these cells in an in vitro gene mutation assay is evaluated in this study, Part II. A panel of 13 mutagenic and nonmutagenic compounds was selected to investigate the performance of the MutaMouse PH in vitro gene mutation assay. The nine mutagens represent a range of classes of chemicals and include mutagens that are both direct-acting and requiring metabolic activation. All the mutagens tested, except for ICR 191, elicited significant, concentration-dependent increases in mutant frequency (MF) ranging from 2.6- to 14.4-fold over the control. None of the four nonmutagens, including two misleading, or "false," positives (i.e., tertiary butylhydroquinone [TBHQ] and eugenol), yielded any significant increases in MF. The benchmark dose covariate approach facilitated ranking of the positive chemicals from most (i.e., 3-nitrobenzanthrone [3-NBA], benzo[a]pyrene [BaP], and aflatoxin B-1 [AFB1]) to least (i.e., N-ethyl-N-nitrosourea [ENU]) potent. Overall, the results of this preliminary validation study suggest that this assay may serve as a complimentary tool alongside the standard genotoxicity test battery. This study, alongside Part I, illustrates the promise of MutaMouse PHs for use in an in vitro gene mutation assay, particularly for chemicals requiring metabolic activation. Environ. Mol. Mutagen. 60:348-360, 2019. (c) 2019 The Authors. Environmental and Molecular Mutagenesis published by Wiley Periodicals, Inc. on behalf of Environmental Mutagen Society.
机译:如在I部分中所示,培养的变质源性肝细胞(pH)是由于它们的代谢能力,其“正常”表型和变质突变型转基因的存在而用于体外基因突变测定的合适细胞。在本研究中,在本研究中评估了在体外基因突变测定中的这些细胞的性能。选择13个诱变和非降低化合物的面板,以研究变异物质pH在体外基因突变测定的性能。九个诱变剂代表一系列化学品,包括直接作用和需要代谢活化的诱变剂。除了ICR 191外,所有测试的致致簇引起的突变频率(MF)的显着浓度依赖性增加,范围为2.6至14.4倍。四个非锻造胶(包括两个误导性)或“假,”阳性(即,叔丁基羟基喹啉[TBHQ]和丁香酚)中没有,产生任何显着增加MF。基准剂量调节方法促进了大多数(即3-硝基苯[3-NBA],苯并[a]芘ρ]和黄曲霉毒素B-1 [AFB1])的阳性化学物质的排名促进了阳性化学物质的排序(即,即乙基-n-硝基脲[enu])有效。总体而言,这项初步验证研究的结果表明,该测定可以作为与标准基因毒性测试电池一起的互补工具。该研究沿I旁,第二部分示出了Mutamouse PH的承诺,用于在体外基因突变测定中使用,特别是对于需要代谢活化的化学品。环境。摩尔。诱惑。 60:348-360,2019。(c)2019年作者。由Wiley期刊,Inc。代表环境诱变社会出版的环境和分子诱变。

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