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Modeling of Rifampicin-Induced CYP3A4 Activation Dynamics for the Prediction of Clinical Drug-Drug Interactions from In Vitro Data.

机译:利福平诱导的CYP3A4激活动力学模型的建立,用于从体外数据预测临床药物相互作用。

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摘要

Induction of cytochrome P450 3A4 (CYP3A4) expression is often implicated in clinically relevant drug-drug interactions (DDI), as metabolism catalyzed by this enzyme is the dominant route of elimination for many drugs. Although several DDI models have been proposed, none have comprehensively considered the effects of enzyme transcription/translation dynamics on induction-based DDI. Rifampicin is a well-known CYP3A4 inducer, and is commonly used as a positive control for evaluating the CYP3A4 induction potential of test compounds. Herein, we report the compilation of in vitro induction data for CYP3A4 by rifampicin in human hepatocytes, and the transcription/translation model developed for this enzyme using an extended least squares method that can account for inherent inter-individual variability. We also developed physiologically based pharmacokinetic (PBPK) models for the CYP3A4 inducer and CYP3A4 substrates. Finally, we demonstrated that rifampicin-induced DDI can be predicted with reasonable accuracy, and that a static model can be used to simulate DDI once the blood concentration of the inducer reaches a steady state following repeated dosing. This dynamic PBPK-based DDI model was implemented on a new multi-hierarchical physiology simulation platform named PhysioDesigner.
机译:细胞色素P450 3A4(CYP3A4)表达的诱导通常与临床相关的药物-药物相互作用(DDI)有关,因为这种酶催化的代谢是许多药物消除的主要途径。尽管已经提出了几种DDI模型,但是没有一种模型能够全面考虑酶转录/翻译动力学对基于诱导的DDI的影响。利福平是众所周知的CYP3A4诱导剂,通常用作评估试验化合物CYP3A4诱导潜力的阳性对照。本文中,我们报道了利福平在人肝细胞中对CYP3A4的体外诱导数据的汇编,以及使用可解释固有个体间差异的扩展最小二乘法为该酶开发的转录/翻译模型。我们还为CYP3A4诱导剂和CYP3A4底物开发了基于生理学的药代动力学(PBPK)模型。最后,我们证明了利福平诱导的DDI可以以合理的准确性进行预测,并且一旦反复给药后诱导剂的血药浓度达到稳定状态,就可以使用静态模型来模拟DDI。基于动态PBPK的DDI模型是在名为PhysioDesigner的新的多层次生理模拟平台上实现的。

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