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人细胞色素P450 3A(CYP3A)亚家族成员对咪达唑仑的区域选择性生物转化。

Regioselective biotransformation of midazolam by members of the human cytochrome P450 3A (CYP3A) subfamily.

作者信息

Gorski J C, Hall S D, Jones D R, VandenBranden M, Wrighton S A

机构信息

Department of Pharmacy Practice, School of Pharmacy, Purdue University, West Lafayette, IN 47907.

出版信息

Biochem Pharmacol. 1994 Apr 29;47(9):1643-53. doi: 10.1016/0006-2952(94)90543-6.

Abstract

The capabilities of cytochrome P4503A4 (CYP3A4), CYP3A5, and fetal hepatic microsomes containing CYP3A7 to metabolize midazolam were investigated using human hepatic microsomes and purified CYP3A4 and CYP3A5. Under initial rate conditions and high substrate concentration (400 microM midazolam), variability among eighteen human liver microsomal samples was 30- and 16- fold for 1'- and 4-hydroxylation of midazolam, respectively. Exclusion of two samples isolated from patients previously administered barbiturates reduced the inter-individual variability to 10.5- and 6.0-fold for 1'- and 4-hydroxylation, respectively. Six fetal hepatic microsomal samples showed 10-fold variation in both 1'-hydroxymidazolam and 4-hydroxymidazolam formation rates. The rates of formation of 4-hydroxymidazolam and 1'-hydroxymidazolam from midazolam by adult samples containing only CYP3A4 and by fetal liver samples were highly correlated (r2 = 0.99 and 0.97, P < 0.01, respectively). The rates of formation of 1'-hydroxymidazolam and 4-hydroxymidazolam from midazolam (400 microM) by adult samples that contained only CYP3A4 were correlated significantly (P < 0.01) with the ability of the samples to N-demethylate erythromycin (r2 = 0.95 and 0.92, respectively). 6 beta-hydroxylate testosterone (r2 = 0.96 and 0.96, respectively), and the CYP3A4 content of the samples (r2 = 0.89 and 0.86, respectively). Microsomal samples containing CYP3A5 in addition to CYP3A4 exhibited a significantly greater ratio of 1'-hydroxymidazolam to 4-hydroxymidazolam compared with samples containing only CYP3A4 or CYP3A7 (P < 0.001). Purified CYP3A5 in a reconstituted system, consisting of dilauroylphosphatidylcholine, cytochrome b5, and NADPH-cytochrome P450 reductase, and an NADPH-regenerating system displayed a 2-fold greater rate of 1'-hydroxymidazolam formation and a similar rate of 4-hydroxymidazolam formation compared with a reconstituted system with CYP3A4. In conclusion, CYP3A4, CYP3A5, and fetal microsomes containing CYP3A7 catalyze 1'- and 4-hydroxylation of midazolam with the ratio of these metabolites indicative of the CYP3A form.

摘要

利用人肝微粒体以及纯化的细胞色素P450 3A4(CYP3A4)和CYP3A5,研究了CYP3A4、CYP3A5以及含有CYP3A7的胎儿肝微粒体代谢咪达唑仑的能力。在初始速率条件和高底物浓度(400μM咪达唑仑)下,18个人肝微粒体样品中咪达唑仑1'-羟基化和4-羟基化的个体间变异分别为30倍和16倍。排除先前服用过巴比妥类药物患者的两个样品后,1'-羟基化和4-羟基化的个体间变异分别降至10.5倍和6.0倍。六个胎儿肝微粒体样品在1'-羟基咪达唑仑和4-羟基咪达唑仑的生成速率上显示出10倍的差异。仅含CYP3A4的成人样品和胎儿肝样品由咪达唑仑生成4-羟基咪达唑仑和1'-羟基咪达唑仑的速率高度相关(r2分别为0.99和0.97,P<0.01)。仅含CYP3A4的成人样品由400μM咪达唑仑生成1'-羟基咪达唑仑和4-羟基咪达唑仑的速率与样品N-去甲基化红霉素的能力(r2分别为0.95和0.92)、6β-羟基化睾酮的能力(r2分别为0.96和0.96)以及样品中CYP3A4的含量(r2分别为0.89和0.86)显著相关(P<0.01)。除CYP3A4外还含有CYP3A5的微粒体样品与仅含CYP3A4或CYP3A7的样品相比,1'-羟基咪达唑仑与4-羟基咪达唑仑的比例显著更高(P<0.001)。在由二月桂酰磷脂酰胆碱、细胞色素b5和NADPH-细胞色素P450还原酶组成的重构系统以及NADPH再生系统中,纯化的CYP3A5与含CYP3A4的重构系统相比,1'-羟基咪达唑仑的生成速率高2倍,4-羟基咪达唑仑的生成速率相似。总之,CYP3A4、CYP3A5以及含有CYP3A7的胎儿微粒体催化咪达唑仑的1'-和4-羟基化,这些代谢物的比例指示了CYP3A的形式。

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