MRC Centre for Drug Safety Science, The Department of Clinical and Molecular Pharmacology, The University of Liverpool, Ashton Street, Liverpool L69 3GE, United Kingdom.
MRC Centre for Drug Safety Science, The Department of Clinical and Molecular Pharmacology, The University of Liverpool, Ashton Street, Liverpool L69 3GE, United Kingdom.
Toxicol In Vitro. 2018 Dec;53:136-147. doi: 10.1016/j.tiv.2018.08.001. Epub 2018 Aug 7.
The importance of mitochondrial toxicity in drug-induced liver injury is well established. The bioenergetic phenotype of the HepaRG cell line was defined in order to assess their suitability as a model of mitochondrial hepatotoxicity. Bioenergetic phenotyping categorised the HepaRG cells as less metabolically active when measured beside the more energetic HepG2 cells. However, inhibition of mitochondrial ATP synthase induced an increase in glycolytic activity of both HepaRG and HepG2 cells suggesting an active Crabtree Effect in both cell lines. The suitability of HepaRG cells for the acute metabolic modification assay as a screen for mitotoxicity was confirmed using a panel of compounds, including both positive and negative mitotoxic compounds. Seahorse respirometry studies demonstrated that a statistically significant decrease in spare respiratory capacity is the first indication of mitochondrial dysfunction. Furthermore, based upon comparing changes in respiratory parameters to those of the positive controls, rotenone and carbonyl cyanide m-chlorophenyl hydrazone, compounds were categorised into two mechanistic groups; inhibitors or uncouplers of the electron transport chain. Overall, the findings from this study have demonstrated that HepaRG cells, despite having different resting bioenergetic phenotype to HepG2 cells are a suitable model to detect drug-induced mitochondrial toxicity with similar detection rates to HepG2 cells.
线粒体毒性在药物性肝损伤中的重要性已得到充分证实。为了评估 HepaRG 细胞系作为线粒体肝毒性模型的适宜性,对其进行了生物能表型分析。生物能表型分析将 HepaRG 细胞归类为代谢活性较低,与更具活力的 HepG2 细胞相比。然而,抑制线粒体 ATP 合酶会增加 HepaRG 和 HepG2 细胞的糖酵解活性,表明这两种细胞系均存在活跃的 Crabtree 效应。使用包括阳性和阴性线粒体毒性化合物在内的化合物对 HepaRG 细胞进行急性代谢修饰测定作为线粒体毒性筛选的适宜性进行了验证。 Seahorse 呼吸计研究表明,备用呼吸能力的统计学显著下降是线粒体功能障碍的第一个迹象。此外,基于与阳性对照(鱼藤酮和羰基氰化物 m-氯苯腙)的呼吸参数变化进行比较,化合物被分为两类机制组;电子传递链的抑制剂或解偶联剂。总体而言,这项研究的结果表明,HepaRG 细胞尽管具有与 HepG2 细胞不同的静息生物能表型,但仍是一种适合检测药物诱导的线粒体毒性的模型,与 HepG2 细胞的检测率相似。