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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Selective mechanism-based inactivation of CYP3A4 by CYP3cide (PF-04981517) and its utility as an in vitro tool for delineating the relative roles of CYP3A4 versus CYP3A5 in the metabolism of drugs
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Selective mechanism-based inactivation of CYP3A4 by CYP3cide (PF-04981517) and its utility as an in vitro tool for delineating the relative roles of CYP3A4 versus CYP3A5 in the metabolism of drugs

机译:CYP3cide(PF-04981517)基于选择性机制的CYP3A4失活及其作为体外工具来描述CYP3A4与CYP3A5在药物代谢中的相对作用

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摘要

CYP3cide (PF-4981517; 1-methyl-3-[1-methyl-5-(4-methylphenyl)-1H-pyrazol-4- yl]-4-[(3S)-3-piperidin-1-ylpyrrolidin-1-yl]-1H-pyrazolo[3,4-d]pyrimidine) is a potent, efficient, and specific time-dependent inactivator of human CYP3A4. When investigating its inhibitory properties, an extreme metabolic inactivation efficiency (kinact/KI) of 3300 to 3800 ml · min-1 · μmol-1 was observed using human liver microsomes from donors of nonfunctioning CYP3A5 (CYP3A5*3/*3). This observed efficiency equated to an apparent KI between 420 and 480 nM with a maximal inactivation rate (kinact) equal to 1.6 min -1. Similar results were achieved with testosterone, another CYP3A substrate, and other sources of the CYP3A4 enzyme. To further illustrate the abilities of CYP3cide, its partition ratio of inactivation was determined with recombinant CYP3A4. These studies produced a partition ratio approaching unity, thus underscoring the inactivation capacity of CYP3cide. When CYP3cide was tested at a concentration and preincubation time to completely inhibit CYP3A4 in a library of genotyped polymorphic CYP3A5 microsomes, the correlation of the remaining midazolam 1′-hydroxylase activity to CYP3A5 abundance was significant (R2 value equal to 0.51, p value of <0.0001). The work presented here supports these findings by fully characterizing the inhibitory properties and exploring CYP3cide's mechanism of action. To aid the researcher, multiple commercially available sources of CYP3cide were established, and a protocol was developed to quantitatively determine CYP3A4 contribution to the metabolism of an investigational compound. Through the establishment of this protocol and the evidence provided here, we believe that CYP3cide is a very useful tool for understanding the relative roles of CYP3A4 versus CYP3A5 and the impact of CYP3A5 genetic polymorphism on a compound's pharmacokinetics.
机译:CYP3cide(PF-4981517; 1-甲基-3- [1-甲基-5-(4-甲基苯基)-1H-吡唑-4-基] -4-[(3S)-3-哌啶-1-基吡咯丁-1 -yl] -1H-吡唑并[3,4-d]嘧啶)是人类CYP3A4的有效,有效且特定时间依赖性灭活剂。当研究其抑制特性时,使用非功能性CYP3A5(CYP3A5 * 3 / * 3)供体的人肝微粒体观察到极高的代谢失活效率(kinact / KI)为3300至3800 ml·min-1·μmol-1。该观察到的效率等于表观KI在420至480 nM之间,最大灭活速率(运动)等于1.6 min -1。用睾丸激素,另一种CYP3A底物和CYP3A4酶的其他来源也获得了相似的结果。为了进一步说明CYP3cide的能力,用重组CYP3A4确定了其灭活的分配比例。这些研究产生的分配比接近1,从而强调了CYP3cide的灭活能力。当在基因型多态性CYP3A5微粒库中对CYP3cide进行浓度和预温育时间测试以完全抑制CYP3A4时,剩余的咪达唑仑1'-羟化酶活性与CYP3A5丰度的相关性显着(R2值等于0.51,p值0.0001)。此处提出的工作通过充分表征抑制特性并探索CYP3cide的作用机理来支持这些发现。为帮助研究人员,建立了多种可商购的CYP3cide来源,并开发了一种用于定量确定CYP3A4对研究化合物代谢的作用的方案。通过建立此协议和此处提供的证据,我们认为CYP3cide是了解CYP3A4与CYP3A5的相对作用以及CYP3A5遗传多态性对化合物药代动力学影响的非常有用的工具。

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