Ogasawara Akira, Kato Nozomu, Torimoto Nao, Aohara Fumika, Ohashi Rikiya, Yamada Yasuhiro, Taniguchi Hideki
Department of Regeneration Medicine, Yokohama City University School of Medicine, Yokohama, Japan.
Research Unit/Innovative Medical Science, Sohyaku Innovative Research Division, Mitsubishi Tanabe Pharma Corporation, Toda, Japan.
Drug Metab Lett. 2018;12(1):14-23. doi: 10.2174/1872312812666180119114013.
The HepaRG cells have key drug metabolism functionalities comparable to those of primary human hepatocytes. Many studies have reported that this cell line can be used as a reliable in vitro model for human drug metabolism studies, including the assessment of cytochrome P450 (CYP) induction.
The objective of this study is to determine whether CYP mRNA level measurement is superior to the CYP enzyme activity measurement as a convenient high-throughput method for evaluating CYP induction potential using HepaRG cells.
QuantiGene Plex 2.0 Assay and LC/MS/MS. mRNA expression levels and enzyme activities of CYP1A2, CYP2B6, and CYP3A in HepaRG cells treated with prototypical inducers of each CYP isoform [omeprazole (OME) for CYP1A2, phenobarbital (PB) for CYP2B6, and rifampicin (RIF) for CYP3A] were evaluated.
Although the activities of CYP2B6 and CYP3A were induced by treatment with PB and RIF, we found that the activity of phenacetin O-deethylase (PHOD), which is known as a marker of the activity of CYP1A2, was also enhanced by treatment with these non-CYP1A2 inducers in HepaRG cells. Based on previously published reports, we hypothesized that the expression ratio of CYP3A to CYP1A2 is much higher in HepaRG cells than in human hepatocytes; this may result in a nonnegligible contribution of CYP3A to the PHOD reaction in HepaRG cells. Studies using CYP3A inhibitor and pregnane X receptor-knockout HepaRG cells supported this hypothesis.
The measurement of mRNA serves as a higher reliable indicator for the evaluation of CYP induction potential when using HepaRG cells.
HepaRG细胞具有与原代人肝细胞相当的关键药物代谢功能。许多研究报道,该细胞系可作为人药物代谢研究的可靠体外模型,包括细胞色素P450(CYP)诱导作用的评估。
本研究的目的是确定在使用HepaRG细胞评估CYP诱导潜力时,作为一种便捷的高通量方法,CYP mRNA水平测量是否优于CYP酶活性测量。
采用QuantiGene Plex 2.0检测法和液相色谱/串联质谱法。评估用每种CYP同工型的典型诱导剂[CYP1A2用奥美拉唑(OME)、CYP2B6用苯巴比妥(PB)、CYP3A用利福平(RIF)]处理的HepaRG细胞中CYP1A2、CYP2B6和CYP3A的mRNA表达水平和酶活性。
虽然PB和RIF处理可诱导CYP2B6和CYP3A的活性,但我们发现,作为CYP1A2活性标志物的非那西丁O-脱乙基酶(PHOD)的活性在HepaRG细胞中也可被这些非CYP1A2诱导剂增强。基于先前发表的报告,我们推测HepaRG细胞中CYP3A与CYP1A2的表达比远高于人肝细胞;这可能导致CYP3A对HepaRG细胞中PHOD反应的贡献不可忽略。使用CYP3A抑制剂和孕烷X受体敲除HepaRG细胞的研究支持了这一假设。
在使用HepaRG细胞时,mRNA测量作为评估CYP诱导潜力的指标更可靠。