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Omics-based responses induced by bosentan in human hepatoma HepaRG cell cultures

机译:博氏植物肝脏肝癌肝癌肝癌中的常规响应

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摘要

Bosentan is well known to induce cholestatic liver toxicity in humans. The present study was set up to characterize the hepatotoxic effects of this drug at the transcriptomic, proteomic, and metabolomic levels. For this purpose, human hepatoma-derived HepaRG cells were exposed to a number of concentrations of bosentan during different periods of time. Bosentan was found to functionally and transcriptionally suppress the bile salt export pump as well as to alter bile acid levels. Pathway analysis of both transcriptomics and proteomics data identified cholestasis as a major toxicological event. Transcriptomics results further showed several gene changes related to the activation of the nuclear farnesoid X receptor. Induction of oxidative stress and inflammation were also observed. Metabolomics analysis indicated changes in the abundance of specific endogenous metabolites related to mitochondrial impairment. The outcome of this study may assist in the further optimization of adverse outcome pathway constructs that mechanistically describe the processes involved in cholestatic liver injury.
机译:众所周知,博森坦诱导人类的胆汁淤积肝毒性。设置本研究表征该药物在转录组,蛋白质组学和代原子学水平的肝毒性效应。为此目的,在不同的时间段期间,将人的肝癌衍生的肝癌细胞暴露于许多浓度的苄孢洲。在功能上发现博塞坦并转录抑制胆汁盐出口泵以及改变胆汁酸水平。转发组学和蛋白质组学数据的途径分析将胆汁淤积鉴定为主要的毒理事件。转录组织结果进一步表明了与核法呢X受体的激活有关的几种基因变化。还观察到诱导氧化应激和炎症。代谢组科分析表明,与线粒体损伤有关的特定内源性代谢物丰富的变化。该研究的结果可以有助于进一步优化的不利结果途径构建体,该构建体机械地描述胆汁肝损伤所涉及的过程。

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