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首页> 外文期刊>Pharmacology and Therapeutics: The Journal of the International Encyclopedia of Pharmacology and Therapeutics >In vitro measurements of metabolism for application in pharmacokinetic modeling.
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In vitro measurements of metabolism for application in pharmacokinetic modeling.

机译:代谢的体外测量,用于药代动力学建模。

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Human risk and exposure assessments require dosimetry information. Species-specific tissue dose response will be driven by physiological and biochemical processes. While metabolism and pharmacokinetic data are often not available in humans, they are much more available in laboratory animals; metabolic rate constants can be readily derived in vitro. The physiological differences between laboratory animals and humans are known. Biochemical processes, especially metabolism, can be measured in vitro and extrapolated to account for in vivo metabolism through clearance models or when linked to a physiologically based pharmacological (PBPK) model to describe the physiological processes, such as drug delivery to the metabolic organ. This review focuses on the different organ, cellular, and subcellular systems that can be used to measure in vitro metabolic rate constants and how those data are extrapolated to be used in biologically based modeling. NOTICE: The views expressed in this paper are those of the authors and do not necessarily reflect the views and policies of the U.S. Environmental Protection Agency. Mention of trade names or commercial products does not constitute endorsement or recommendation for use.
机译:人类风险和暴露评估需要剂量学信息。特定物种的组织剂量反应将由生理和生化过程驱动。虽然人体通常无法获得新陈代谢和药代动力学数据,但在实验动物中却可以获得更多数据。代谢率常数可以很容易地在体外获得。实验动物和人类之间的生理差异是已知的。可以在体外测量生化过程,尤其是代谢过程,并通过清除模型或与基于生理的药理学(PBPK)模型链接以描述生理过程(例如将药物递送至代谢器官)的方法外推以说明体内的代谢情况。这篇综述着重于可用于测量体外代谢速率常数的不同器官,细胞和亚细胞系统,以及如何推断这些数据以用于基于生物学的建模。注意:本文中表达的观点仅为作者的观点,不一定反映美国环境保护署的观点和政策。提及商品名称或商业产品并不构成认可或推荐使用。

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