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首页> 外文期刊>Journal of biochemical and molecular toxicology >Gene expression-based in vivo and in vitro prediction of liver toxicity allows compound selection at an early stage of drug development.
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Gene expression-based in vivo and in vitro prediction of liver toxicity allows compound selection at an early stage of drug development.

机译:基于基因表达的体内和体外肝毒性预测可以在药物开发的早期阶段选择化合物。

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We have analyzed gene expression and histopathology of rat liver treated with a histamine-3 receptor inverse agonist under development for the treatment of obesity 24 h after a single acute administration. While histopathology did not identify a clear liver toxicity, analysis of gene changes strongly suggested the development of toxicity. This prediction was confirmed in a 2-week repeat-dose rat study where prominent liver pathology occurred, while gene changes that lead to the prediction persisted. A subset of these genes was analyzed in vitro in both rat and human hepatocytes to reveal the potential relevancy of the findings for the situation in humans. This comprehensive analysis of the development compound at the gene expression level allowed interpretation of findings of the follow-up compound in a frontloaded 24-h single-dose acute study that was initiated before regular 2-week repeat-dose studies started. The high similarity of the follow-up compound to the lead compound based on gene expression lead to the immediate termination of the development program for this compound series. Our data demonstrate the value of genomics-based early toxicity prediction in short-term in vivo studies for the characterization of compounds to allow prioritization and selection of suited candidates before compound-, animal-, and cost-intensive longer term studies are undertaken.
机译:我们已经分析了用组胺3受体反向激动剂治疗的大鼠肝脏的基因表达和组织病理学,该大鼠肝脏在单次急性给药后24小时内正在治疗肥胖症。尽管组织病理学未发现明显的肝毒性,但对基因变化的分析强烈提示了毒性的发展。在一项为期2周的重复剂量大鼠研究中证实了这一预测,该研究中发生了明显的肝脏病理,而导致该预测的基因改变仍然存在。在大鼠和人类肝细胞中对这些基因的一部分进行了体外分析,以揭示这些发现与人类情况的潜在相关性。对发育化合物在基因表达水平上的全面分析,可以解释在提前进行的为期2周的重复剂量研究开始之前进行的前负荷24小时单剂量急性研究中对后续化合物的发现。后续化合物与基于基因表达的先导化合物的高度相似性导致该化合物系列的开发计划立即终止。我们的数据证明了基于基因组学的早期毒性预测在短期体内研究中对于化合物的表征具有重要意义,从而可以在进行化合物,动物和成本密集的长期研究之前确定优先级并选择合适的候选药物。

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