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在体外肠吸收细胞模型中药物处置动力学的建模。

Modelling of drug disposition kinetics in in vitro intestinal absorption cell models.

机构信息

Department of Pharmaceutics, University of Kuopio, Kuopio, Finland.

出版信息

Basic Clin Pharmacol Toxicol. 2010 Mar;106(3):180-8. doi: 10.1111/j.1742-7843.2009.00504.x. Epub 2009 Dec 22.

Abstract

One major prerequisite for an orally administered drug is the ability to cross the intestinal epithelia from intestinal lumen into the blood circulation. Therefore, the absorption potential of molecules is studied early on during the drug development process. Permeation experiments using cultured cell monolayers are one of the most often applied methods to screen and also to predict in more detail the intestinal absorption potential of molecules in preclinical phase. Furthermore, these studies are also used to screen the molecules for transporter interactions as well as for more detailed mechanistic studies of the transfer routes involved. Several mathematical and computational models with complexity varying from simple non-mechanistic single barrier models to mechanistically more detailed compartmental models have been developed to describe the drug disposition during these in vitro permeation experiments. This MiniReview gives an overview of these models and their applications. Also the implications of these models to the prediction of intestinal absorption in vivo are discussed.

摘要

口服药物的一个主要前提条件是能够从肠腔穿过肠上皮进入血液循环。因此,在药物开发过程的早期就研究了分子的吸收潜力。使用培养的细胞单层进行渗透实验是筛选和更详细地预测分子在临床前阶段的肠道吸收潜力的最常用方法之一。此外,这些研究还用于筛选分子的转运体相互作用,以及更详细地研究所涉及的转移途径的机制研究。已经开发了几种数学和计算模型,其复杂性从简单的非机械单屏障模型到更详细的机械分隔模型不等,以描述这些体外渗透实验中的药物分布。这篇综述概述了这些模型及其应用。还讨论了这些模型对体内肠道吸收预测的影响。

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