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类药化合物的脂双层渗透。

Lipid-bilayer permeation of drug-like compounds.

机构信息

Institute of Pharmaceutical Sciences, ETH-Zürich, Wolfgang-Pauli-Strasse 10, CH-8093 Zürich.

出版信息

Chem Biodivers. 2009 Nov;6(11):1900-16. doi: 10.1002/cbdv.200900122.

Abstract

Lipid-bilayer permeation is determinant for the disposition of xenobiotics in the body. It controls the pharmacokinetic behavior of drugs and is, in many cases, a prerequisite for intracellular targeting. Permeation of in vivo barriers is in general predicted from lipophilicity and related parameters. This article goes beyond the empirical correlations, and elucidates the processes and their interplay determining bilayer permeation. A flip-flop model for bilayer permeation, which considers the partitioning rate constants beside the translocation rate constants, is compared with the diffusion model based on Fick's first law. According to the flip-flop model, the ratios of aqueous volumes to barrier area can determine whether partitioning or translocation is rate-limiting. The flip-flop model allows permeation of anions and cations, and expands our understanding of pH-dependent permeation kinetics. Some experimental evidences for ion-controlled permeation at pH 7 are also included in this work.

摘要

脂质双层渗透对于外来物质在体内的分布具有决定性作用。它控制着药物的药代动力学行为,并且在许多情况下,是细胞内靶向的前提条件。体内屏障的渗透通常可以根据脂溶性和相关参数来预测。本文超越了经验相关性,阐明了决定双层渗透的过程及其相互作用。本文比较了考虑分配速率常数和转运速率常数的双层渗透翻转模型与基于菲克第一定律的扩散模型。根据翻转模型,水相体积与屏障面积的比值可以确定是分配还是转运是限速步骤。翻转模型允许阴离子和阳离子的渗透,并扩展了我们对 pH 依赖性渗透动力学的理解。本文还包括了一些关于 pH 值为 7 时离子控制渗透的实验证据。

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