Department of Physiology and Pharmacology, Section of Pharmacogenetics, Karolinska Institutet, Nanna Svartz väg 2, SE-171 77 Stockholm, Sweden.
Drug Metab Dispos. 2010 Jun;38(6):995-1002. doi: 10.1124/dmd.110.032367. Epub 2010 Mar 16.
Drug-induced hepatotoxicity is an important cause for disapproval, limitations of use, or withdrawal of drugs, and there is a high need for reproducible in vitro systems that can predict such toxicity. In this study, we show that confluent growth of the human hepatoma cell line Huh7 up to 5 weeks results in increased gene expression of several cytochromes P450 (P450s), UDP-glucuronosyltransferases, transporters, transcription factors, and several liver-specific genes, as measured by low-density array. The most striking effect was seen for CYP3A4 expression. Western blot analysis revealed increased amounts of CYP3A4 together with increased levels of NADPH-P450 reductase, cytochrome b(5), and albumin with prolonged time of confluence. By using the CYP3A4-specific substrates luciferin 6' benzyl ether, testosterone, and midazolam, we could confirm that the increased CYP3A4 gene expression also was accompanied by a similar increase in catalytic activity, inhibitable by the CYP3A4-selective inhibitor ketoconazole. The CYP3A4 activity in confluent cells was also inducible by rifampicin. Finally, the cell system could support the CYP3A4-dependent hepatotoxic activation of aflatoxin B(1), which was effectively inhibited by ketoconazole. Our results show that Huh7 cells grown confluent differentiate into a more metabolically competent cell line, especially with regard to CYP3A4.
药物诱导的肝毒性是药物被否决、使用受限或撤市的一个重要原因,因此非常需要能够重现这种毒性的可重复的体外系统。在这项研究中,我们表明,人肝癌细胞系 Huh7 达到 5 周的汇合生长导致几种细胞色素 P450(P450s)、UDP-葡糖醛酸基转移酶、转运蛋白、转录因子和几种肝脏特异性基因的基因表达增加,这是通过低密度阵列测量的。最显著的影响是 CYP3A4 的表达。Western blot 分析显示,随着汇合时间的延长,CYP3A4 的含量增加,同时 NADPH-P450 还原酶、细胞色素 b(5)和白蛋白的水平也增加。使用 CYP3A4 特异性底物荧光素 6' 苯甲醚、睾酮和咪达唑仑,我们可以证实,增加的 CYP3A4 基因表达也伴随着相似的催化活性增加,这种活性可被 CYP3A4 选择性抑制剂酮康唑抑制。在汇合细胞中,CYP3A4 活性也可被利福平诱导。最后,该细胞系统能够支持黄曲霉毒素 B(1)的 CYP3A4 依赖性肝毒性激活,酮康唑可有效抑制该激活。我们的结果表明,汇合生长的 Huh7 细胞分化为一种代谢能力更强的细胞系,尤其是在 CYP3A4 方面。