Jang G R, Benet L Z
Department of Biopharmaceutical Sciences, School of Pharmacy, University of California at San Francisco, USA.
Pharmacology. 1998 Mar;56(3):150-7. doi: 10.1159/000028193.
Based on previous observations of very short periods of linearity for antiprogestin metabolite formation and the presence of a common tertiary amine moiety in each compound as the principal site of their metabolism, we hypothesized that mifepristone, lilopristone and onapristone are oxidized by cytochrome P450 (CYP) 3A4 to reactive nitroso species that complex the heme of the enzyme, thereby inactivating it. Upon preincubation with human liver microsomes in the presence (but not the absence) of NADPH, mifepristone inhibited midazolam 1'-hydroxylation, a marker of CYP3A4 catalytic activity, very potently (IC50 approximately 3.5 mumol/l) and extensively (by approximately 87%). Lilopristone and onapristone also displayed NADPH and time-dependent inactivation of CYP3A4 with characteristics very similar to mifepristone. These data support antiprogestin-mediated inactivation of CYP3A4 and suggest the potential for drug-drug interactions and time-dependent nonlinearities in pharmacokinetics upon their long-term administration.
基于先前观察到的抗孕激素代谢物形成的线性期非常短,以及每种化合物中存在一个共同的叔胺部分作为其代谢的主要位点,我们推测米非司酮、利洛司酮和奥那司酮被细胞色素P450(CYP)3A4氧化为活性亚硝基物质,这些物质与该酶的血红素结合,从而使其失活。在存在(而非不存在)NADPH的情况下与人肝微粒体预孵育时,米非司酮非常有效地(IC50约为3.5 μmol/L)且广泛地(约87%)抑制了咪达唑仑1'-羟基化,这是CYP3A4催化活性的一个标志物。利洛司酮和奥那司酮也表现出NADPH和时间依赖性的CYP3A4失活,其特征与米非司酮非常相似。这些数据支持抗孕激素介导的CYP3A4失活,并提示长期给药时它们在药代动力学方面存在药物相互作用和时间依赖性非线性的可能性。