通过基于生理的药代动力学建模评估p -糖蛋白表达组织中的药物分布:模型结构和参数确定。

Frédérique Fenneteau, Jacques Turgeon, Lucie Couture, Véronique Michaud, Jun Li, Fahima Nekka
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引用次数: 37

摘要

背景:遗传或环境因素导致的p糖蛋白的表达和活性可能对药物处置、药物有效性或药物毒性产生重大影响。因此,需要在这些膜转运蛋白活性的广泛条件下表征药物处置,以更好地表征药物的药代动力学和药效学。这项工作旨在提高我们对P-gp活性调节对P-gp底物组织分布的影响的理解。方法:建立PBPK模型,检测P-gp转运体在小鼠脑和心脏的活性和表达。药物在这些组织中的分布首先由充分搅拌(WS)模型表示,然后由基于机制转运(MTB)模型改进,其中包括P-gp介导的药物转运。为了估计与转运相关的参数,我们开发了一个原始的三步程序,允许将体外药物渗透性测量外推到体内情况。将模型模拟结果与一组有限的数据进行比较,以评估模型重现药物在考虑组织中分布的重要信息的能力。结果:该PBPK模型揭示了P-gp非消除组织中药物分布的机制。MTB模型解释了药物在心脏和大脑中分布的主要转运机制。提示P-gp对血脑屏障的保护作用,较WS模型有明显改善。结论:该方法在体内数据之前构建,为拟合程序提供了一种有趣的替代方法,可以适应不同的药物和转运体。基于生理学的模型新颖独特,提供了药物转运体的有效信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Assessing drug distribution in tissues expressing P-glycoprotein through physiologically based pharmacokinetic modeling: model structure and parameters determination.

Background: The expression and activity of P-glycoproteins due to genetic or environmental factors may have a significant impact on drug disposition, drug effectiveness or drug toxicity. Hence, characterization of drug disposition over a wide range of conditions of these membrane transporters activities is required to better characterize drug pharmacokinetics and pharmacodynamics. This work aims to improve our understanding of the impact of P-gp activity modulation on tissue distribution of P-gp substrate.

Methods: A PBPK model was developed in order to examine activity and expression of P-gp transporters in mouse brain and heart. Drug distribution in these tissues was first represented by a well-stirred (WS) model and then refined by a mechanistic transport-based (MTB) model that includes P-gp mediated transport of the drug. To estimate transport-related parameters, we developed an original three-step procedure that allowed extrapolation of in vitro measurements of drug permeability to the in vivo situation. The model simulations were compared to a limited set of data in order to assess the model ability to reproduce the important information of drug distributions in the considered tissues.

Results: This PBPK model brings insights into the mechanism of drug distribution in non eliminating tissues expressing P-gp. The MTB model accounts for the main transport mechanisms involved in drug distribution in heart and brain. It points out to the protective role of P-gp at the blood-brain barrier and represents thus a noticeable improvement over the WS model.

Conclusion: Being built prior to in vivo data, this approach brings an interesting alternative to fitting procedures, and could be adapted to different drugs and transporters. The physiological based model is novel and unique and brought effective information on drug transporters.

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Theoretical Biology and Medical Modelling
Theoretical Biology and Medical Modelling MATHEMATICAL & COMPUTATIONAL BIOLOGY-
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期刊介绍: Theoretical Biology and Medical Modelling is an open access peer-reviewed journal adopting a broad definition of "biology" and focusing on theoretical ideas and models associated with developments in biology and medicine. Mathematicians, biologists and clinicians of various specialisms, philosophers and historians of science are all contributing to the emergence of novel concepts in an age of systems biology, bioinformatics and computer modelling. This is the field in which Theoretical Biology and Medical Modelling operates. We welcome submissions that are technically sound and offering either improved understanding in biology and medicine or progress in theory or method.
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