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A mechanism-based integrated pharmacokinetic enzyme model describing the time course and magnitude of phenobarbital-mediated enzyme induction in the rat.

机译:基于机制的综合药代动力学酶模型,描述了大鼠苯巴比妥介导的酶诱导的时间过程和幅度。

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摘要

PURPOSE: To characterize the magnitude, time course, and specificity of phenobarbital (PB)-mediated enzyme induction, and further, to develop an integrated pharmacokinetic (PK)-enzyme model describing the changes in the activities of CYP enzymes as well as in the PK of PB. METHODS: PB plasma concentrations and in vitro activities of several CYP enzymes were measured in rats treated with PB between 0 and 14 days. A PB PK-enzyme induction model was developed using the program NONMEM: . RESULTS: PB treatment both induces and reduces the activity of CYP enzymes by stimulating the enzymes' formation or elimination rates. Certain CYP enzymes affected the PB PK through autoinduction. The half-life of the induction process was estimated to be 2 days for CYP1A2, CYP3A1/2, and CYP2B1/2, and 3 days for androstenedione producing enzymes. The CYP2C11 activity was rapidly reduced by PB treatment. A lag time for the PB autoinduction was observed. This lag time is explained by the rate difference between induction and reduction in CYP activities. CONCLUSION: To our knowledge, this is the first example of an induction model that simultaneously describes plasma PK and in vitro data. It does so by integrating the bidirectional interaction between drug and enzymes in a mechanistic manner.
机译:目的:表征苯巴比妥(PB)介导的酶诱导的幅度,时间过程和特异性,并进一步开发描述药物代谢动力学(PK)-酶的集成模型,该模型描述CYP酶活性以及CYP酶的变化。 PB的PK。方法:在0至14天之间,用PB治疗大鼠,测定其PB血浆浓度和几种CYP酶的体外活性。使用程序NONMEM开发了PB PK酶诱导模型。结果:PB处理可通过刺激CYP酶的形成或消除速率来诱导和降低CYP酶的活性。某些CYP酶通过自诱导作用影响PB PK。对于CYP1A2,CYP3A1 / 2和CYP2B1 / 2,诱导过程的半衰期估计为2天,对于产生雄烯二酮的酶估计为3天。 CYP2C11活性被PB处理迅速降低。观察到PB自动感应的滞后时间。此延迟时间是由CYP活性的诱导和降低之间的速率差异解释的。结论:据我们所知,这是同时描述血浆PK和体外数据的诱导模型的第一个例子。它是通过以机械方式整合药物和酶之间的双向相互作用来实现的。

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