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Comparison of Liver Cell Models Using the Basel Phenotyping Cocktail

机译:使用巴塞尔表型鸡尾酒比较肝细胞模型

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摘要

Currently used hepatocyte cell systems for in vitro assessment of drug metabolism include hepatoma cell lines and primary human hepatocyte (PHH) cultures. We investigated the suitability of the validated in vivo Basel phenotyping cocktail (caffeine [CYP1A2], efavirenz [CYP2B6], losartan [CYP2C9], omeprazole [CYP2C19], metoprolol [CYP2D6], midazolam [CYP3A4]) in vitro and characterized four hepatocyte cell systems (HepG2 cells, HepaRG cells, and primary cryopreserved human hepatocytes in 2-dimensional [2D] culture or in 3D-spheroid co-culture) regarding basal metabolism and CYP inducibility. Under non-induced conditions, all CYP activities could be determined in 3D-PHH, CYP2B6, CYP2C19, CYP2D6, and CYP3A4 in 2D-PHH and HepaRG, and CYP2C19 and CYP3A4 in HepG2 cells. The highest non-induced CYP activities were observed in 3D-PHH and HepaRG cells. mRNA expression was at least four-fold higher for all CYPs in 3D-PHH compared to the other cell systems. After treatment with 20 μM rifampicin, mRNA increased 3- to 50-fold for all CYPs except CYP1A2 and 2D6 for HepaRG and 3D-PHH, 4-fold (CYP2B6) and 17-fold (CYP3A4) for 2D-PHH and four-fold (CYP3A4) for HepG2. In 3D-PHH at least a two-fold increase in CYP activity was observed for all inducible CYP isoforms while CYP1A2 and CYP2C9 activity did not increase in 2D-PHH and HepaRG. CYP inducibility assessed in vivo using the same phenotyping probes was also best reflected by the 3D-PHH model. Our studies show that 3D-PHH and (with some limitations) HepaRG are suitable cell systems for assessing drug metabolism and CYP induction in vitro. HepG2 cells are less suited to assess CYP induction of the 2C and 3A family. The Basel phenotyping cocktail is suitable for the assessment of CYP activity and induction also in vitro.
机译:当前用于体外评估药物代谢的肝细胞系统包括肝癌细胞系和原代人肝细胞(PHH)培养。我们研究了体外验证巴塞尔表型鸡尾酒(咖啡因[CYP1A2],依法韦仑[CYP2B6],氯沙坦[CYP2C9],奥美拉唑[CYP2C19],美托洛尔[CYP2D6],咪达唑仑[CYP3A4])在细胞中的适用性,并鉴定了四种肝细胞基础代谢和CYP诱导能力的相关系统(HepG2细胞,HepaRG细胞和原代冷冻保存的人肝细胞在二维[2D]培养或3D球体共培养中)。在非诱导条件下,所有CYP活性均可在2D-PHH和HepaRG中的3D-PHH,CYP2B6,CYP2C19,CYP2D6和CYP3A4中以及在HepG2细胞中测定CYP2C19和CYP3A4中。在3D-PHH和HepaRG细胞中观察到最高的非诱导CYP活性。与其他细胞系统相比,3D-PHH中所有CYP的mRNA表达至少高四倍。用20μM利福平处理后,除了HepaRG和3D-PHH的CYP1A2和2D6以外,所有CYP的mRNA增加3至50倍,2D-PHH的4倍(CYP2B6)和17倍(CYP3A4)和4倍。 (CYP3A4)用于HepG2。在3D-PHH中,对于所有可诱导的CYP亚型,至少观察到CYP活性增加两倍,而在2D-PHH和HepaRG中,CYP1A2和CYP2C9活性并未增加。 3D-PHH模型也最好地反映了使用相同表型探针在体内评估的CYP诱导能力。我们的研究表明3D-PHH和(有一定局限性)HepaRG是用于评估体外药物代谢和CYP诱导的合适细胞系统。 HepG2细胞不太适合评估2C和3A家族的CYP诱导作用。巴塞尔表型鸡尾酒适合于体外评估CYP活性和诱导作用。

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