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膜渗透过程中的侧向传输:扩散池边缘效应和膜阻塞的计算研究。

Lateral Transport During Membrane Permeation in Diffusion Cell: In Silico Study on Edge Effect and Membrane Blocking.

机构信息

Division of Pharmaceutical Sciences, James L Winkle College of Pharmacy, University of Cincinnati, Cincinnati, OH 45267, United States.

Division of Pharmaceutical Sciences, James L Winkle College of Pharmacy, University of Cincinnati, Cincinnati, OH 45267, United States.

出版信息

J Pharm Sci. 2023 Jun;112(6):1653-1663. doi: 10.1016/j.xphs.2023.01.022. Epub 2023 Jan 31.

Abstract

Membrane transport in diffusion cell studies is not one-dimensional from the donor to the receptor. Lateral diffusion within the membrane into the surrounding clamped region can lead to edge effect. Lateral diffusion can also affect the impact of an object blocking the membrane in a diffusion cell. The effects of lateral transport on permeation across a two-layer membrane in diffusion cells were investigated in this study under edge effect and membrane blocking conditions that could be encountered in previous gingiva and hypothetical skin permeation studies. Model simulations of time-dependent and steady-state transport were performed using COMSOL Multiphysics. The simulations indicated edge effect could increase the steady-state flux across the membrane up to 35% with a relatively thick membrane and small diffusion cell opening (e.g., gingiva study). The edge effect decreased when the relative thickness and permeability of the major barrier (top layer in the two-layer membrane) decreased. When the membrane was partially blocked by an object, lateral diffusion within the membrane could mitigate its impact: e.g., when the object was in the receptor, the impact caused by membrane blocking was reduced more than half. Therefore, membrane lateral transport should be considered under certain circumstances in permeation studies using diffusion cells.

摘要

扩散池研究中的膜转运不是从供体到受体的一维过程。膜内的侧向扩散进入周围的钳位区域可能导致边缘效应。侧向扩散也会影响扩散池内阻挡膜的物体的影响。本研究在边缘效应和膜阻塞条件下,研究了侧向传输对扩散池双层膜渗透的影响,这些条件可能在前牙龈和假设皮肤渗透研究中遇到。使用 COMSOL Multiphysics 对时变和稳态传输进行了模型模拟。模拟表明,边缘效应可以使膜的稳态通量增加高达 35%,对于较厚的膜和较小的扩散池开口(例如,牙龈研究)。当主要屏障(双层膜中的顶层)的相对厚度和渗透性降低时,边缘效应减小。当膜被物体部分阻塞时,膜内的侧向扩散可以减轻其影响:例如,当物体在受体中时,膜阻塞引起的影响减少了一半以上。因此,在使用扩散池进行渗透研究时,在某些情况下应考虑膜侧向传输。

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