首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Metabolite formation kinetics and intrinsic clearance of phenacetin, tolbutamide, alprazolam, and midazolam in adenoviral cytochrome P450-transfected HepG2 cells and comparison with hepatocytes and in vivo.
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Metabolite formation kinetics and intrinsic clearance of phenacetin, tolbutamide, alprazolam, and midazolam in adenoviral cytochrome P450-transfected HepG2 cells and comparison with hepatocytes and in vivo.

机译:非那西丁,甲苯磺丁酰胺,阿普唑仑和咪达唑仑在腺病毒细胞色素P450转染的HepG2细胞中的代谢物形成动力学和固有清除率,并与肝细胞和体内进行比较。

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摘要

Cryopreserved human hepatocytes and other in vitro systems often underpredict in vivo intrinsic clearance (CL(int)). The aim of this study was to explore the potential utility of HepG2 cells transduced with adenovirus vectors expressing a single cytochrome P450 enzyme (Ad-CYP1A2, Ad-CYP2C9, or Ad-CYP3A4) for metabolic clearance predictions. The kinetics of metabolite formation from phenacetin, tolbutamide, and alprazolam and midazolam, selected as substrates probes for CYP1A2, CYP2C9, and CYP3A4, respectively, were characterized in this in vitro system. The magnitude of the K(m) or S(50) values observed in Ad-P450 cells was similar to those found in the literature for other human liver-derived systems. For each substrate, CL(int) (or CL(max)), values from Ad-P450 systems were scaled to human hepatocytes in primary culture using the relative activity factor (RAF) approach. Scaled Ad-P450 CL(int) values were approximately 3- to 6-fold higher (for phenacetin O-deethylation, tolbutamide 4-hydroxylation, and alprazolam 4-hydroxyaltion) or lower (midazolam 1'-hydroxylation) than those reported for human cryopreserved hepatocytes in suspension. Comparison with the in vivo data reveals that Ad-P450 cells provide a favorable prediction of CL(int) for the substrates studied (in a range of 20-200% in vivo observed CL(int)). This is an improvement compared with the consistent underpredictions (<10-50% in in vivo observed CL(int)) found in cryopreserved hepatocyte studies with the same substrates. These results suggest that the Ad-P450 cell is a promising in vitro system for clearance predictions of P450-metabolized drugs.
机译:冷冻保存的人肝细胞和其他体外系统通常会低估体内固有清除率(CL(int))。这项研究的目的是探讨用表达单个细胞色素P450酶(Ad-CYP1A2,Ad-CYP2C9或Ad-CYP3A4)的腺病毒载体转导的HepG2细胞在代谢清除率预测中的潜在用途。在该体外系统中表征了分别被选作CYP1A2,CYP2C9和CYP3A4底物探针的非那西丁,甲苯磺丁酰胺,阿普唑仑和咪达唑仑形成代谢物的动力学。在Ad-P450细胞中观察到的K(m)或S(50)值的大小与文献中其他人类肝脏衍生系统的大小相似。对于每种底物,使用相对活性因子(RAF)方法,将Ad-P450系统的CL(int)(或CL(max))值缩放至原代培养的人肝细胞。标定的Ad-P450 CL(int)值(对于非那西丁O-去乙基化,甲苯磺丁酰胺4-羟基化和阿普唑仑4-羟基化)大约(比咪达唑仑1'-羟基化)高3至6倍或更低。冷冻保存的肝细胞悬液。与体内数据的比较表明,Ad-P450细胞可为所研究的底物提供良好的CL(int)预测(在体内观察到的20%至200%的CL(int)范围内)。与在相同底物的冷冻保存的肝细胞研究中发现的一致的预测不足(体内观察到的CL(int)<10-50%)相比,这是一个进步。这些结果表明,Ad-P450细胞是用于P450代谢药物清除率预测的有希望的体外系统。

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