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Integration of metabolic activation with a predictive toxicogenomics signature to classify genotoxic versus nongenotoxic chemicals in human TK6 cells

机译:代谢激活与预测性毒理基因组学特征的整合可对人TK6细胞中的遗传毒性和非遗传毒性化学品进行分类

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摘要

The use of integrated approaches in genetic toxicology, including the incorporation of gene expression data to determine the molecular pathways involved in the response, is becoming more common. In a companion article, a genomic biomarker was developed in human TK6 cells to classify chemicals as genotoxic or nongenotoxic. Because TK6 cells are not metabolically competent, we set out to broaden the utility of the biomarker for use with chemicals requiring metabolic activation. Specifically, chemical exposures were conducted in the presence of rat liver S9. The ability of the biomarker to classify genotoxic (benzo[a]pyrene, BaP; aflatoxin B1, AFB1) and nongenotoxic (dexamethasone, DEX; phenobarbital, PB) agents correctly was evaluated. Cells were exposed to increasing chemical concentrations for 4 hr and collected 0 hr, 4 hr, and 20 hr postexposure. Relative survival, apoptosis, and micronucleus frequency were measured at 24 hr. Transcriptome profiles were measured with Agilent microarrays. Statistical modeling and bioinformatics tools were applied to classify each chemical using the genomic biomarker. BaP and AFB1 were correctly classified as genotoxic at the mid‐ and high concentrations at all three time points, whereas DEX was correctly classified as nongenotoxic at all concentrations and time points. The high concentration of PB was misclassified at 24 hr, suggesting that cytotoxicity at later time points may cause misclassification. The data suggest that the use of S9 does not impair the ability of the biomarker to classify genotoxicity in TK6 cells. Finally, we demonstrate that the biomarker is also able to accurately classify genotoxicity using a publicly available dataset derived from human HepaRG cells. Environ. Mol. Mutagen. 56:520–534, 2015. © 2015 The Authors. Environmental and Molecular Mutagenesis Published by Wiley Periodicals, Inc.
机译:在遗传毒理学中使用整合方法,包括整合基因表达数据来确定参与反应的分子途径,已变得越来越普遍。在同伴文章中,在人类TK6细胞中开发了一种基因组生物标记,以将化学物质分类为遗传毒性或非遗传毒性。由于TK6细胞不具有代谢能力,因此我们着手扩大生物标记物与需要代谢活化的化学物质一起使用的效用。具体地,在大鼠肝S9的存在下进行化学暴露。评估了生物标记物正确分类遗传毒性(苯并[a] py,BaP;黄曲霉毒素B1,AFB1)和非遗传毒性(地塞米松,DEX;苯巴比妥,PB)的能力。将细胞暴露于增加的化学浓度下4小时,并在暴露后0小时,4小时和20小时收集细胞。在24小时测量相对存活,细胞凋亡和微核频率。转录组图谱用安捷伦微阵列测量。应用统计建模和生物信息学工具使用基因组生物标记物对每种化学物质进行分类。在所有三个时间点,BaP和AFB1在中浓度和高浓度下均被正确分类为遗传毒性,而在所有浓度和时间点上,DEX被正确分类为非基因毒性。高浓度的PB在24小时时被错误分类,表明在以后的时间点的细胞毒性可能导致错误分类。数据表明,使用S9不会损害生物标记物对TK6细胞遗传毒性进行分类的能力。最后,我们证明了该生物标志物还能够使用衍生自人HepaRG细胞的公开可用数据集准确分类遗传毒性。环境。大声笑诱变剂。 56:520–534,2015.©2015作者。 Wiley Periodicals,Inc.发布的环境和分子诱变

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