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首页> 外文期刊>The pharmacogenomics journal >Data mining reveals a network of early-response genes as a consensus signature of drug-induced in vitro and in vivo toxicity
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Data mining reveals a network of early-response genes as a consensus signature of drug-induced in vitro and in vivo toxicity

机译:数据挖掘揭示了早期反应基因网络,作为药物诱导的体外和体内毒性的共识标志

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摘要

Gene signatures of drug-induced toxicity are of broad interest, but they are often identified from small-scale, single-time point experiments, and are therefore of limited applicability. To address this issue, we performed multivariate analysis of gene expression, cell-based assays, and histopathological data in the TG-GATEs (Toxicogenomics Project-Genomics Assisted Toxicity Evaluation system) database. Data mining highlights four genes - EGR1, ATF3, GDF15 and FGF21 - that are induced 2 h after drug administration in human and rat primary hepatocytes poised to eventually undergo cytotoxicity-induced cell death. Modelling and simulation reveals that these early stress-response genes form a functional network with evolutionarily conserved structure and intrinsic dynamics. This is underlined by the fact that early induction of this network in vivo predicts drug-induced liver and kidney pathology with high accuracy. Our findings demonstrate the value of early gene-expression signatures in predicting and understanding compound-induced toxicity. The identified network can empower first-line tests that reduce animal use and costs of safety evaluation.
机译:药物诱导毒性的基因特征引起广泛关注,但是它们通常是通过小规模的单时间点实验确定的,因此适用性有限。为了解决这个问题,我们在TG-GATEs(毒物基因组计划-基因组学辅助毒性评估系统)数据库中进行了基因表达,基于细胞的测定和组织病理学数据的多变量分析。数据挖掘突出显示了四种基因-EGR1,ATF3,GDF15和FGF21-药物给药后2小时在人和大鼠原代肝细胞中被诱导,这些基因最终将遭受细胞毒性诱导的细胞死亡。建模和仿真表明,这些早期的应激反应基因形成了具有进化保守结构和内在动力学的功能网络。通过以下事实强调了这一点,即该网络在体内的早期诱导可高度准确地预测药物诱导的肝肾病理。我们的发现证明了早期基因表达特征在预测和理解化合物诱导的毒性中的价值。识别出的网络可以进行一线测试,从而减少动物使用和安全评估成本。

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