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脂质双分子层膜中的非线性电效应。3. 离解场效应。

Nonlinear electrical effects in lipid bilayer membranes. 3. The dissociation field effect.

作者信息

Neumcke B, Walz D, Läuger P

出版信息

Biophys J. 1970 Feb;10(2):172-82. doi: 10.1016/s0006-3495(70)86292-0.

Abstract

In the course of an analysis of nonlinear electrical effects in lipid bilayer membranes, the influence of the dissociation field (or Wien) effect on the membrane conductivity is investigated. It is shown that the theory of Onsager for the Wien effect in a macroscopic phase can be applied to a thin membrane when the proper boundary conditions at the membrane-solution interface are introduced. It is assumed that an activation energy is associated with the passage of the ion across the interface. The mathematical treatment of the model is restricted to the case for which cations and anions have identical properties except for the charge sign. The resulting differential equations for the ion concentration within the membrane are integrated numerically. The analysis shows that the influence of the Wien effect on the membrane conductivity is appreciable only if the energy barrier at the interface is sufficiently high, i.e. if the rate limiting step for the ion transport is the passage of the ion across the interface.

摘要

在对脂质双分子层膜中的非线性电效应进行分析的过程中,研究了离解场(或维恩)效应对膜电导率的影响。结果表明,当引入膜 - 溶液界面处的适当边界条件时,昂萨格关于宏观相中维恩效应的理论可应用于薄膜。假定离子穿过界面的过程与活化能相关。该模型的数学处理仅限于阳离子和阴离子除电荷符号外具有相同性质的情况。对膜内离子浓度所得的微分方程进行了数值积分。分析表明,仅当界面处的能垒足够高时,即离子传输的限速步骤是离子穿过界面时,维恩效应才会对膜电导率产生显著影响。

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Current voltage curves of biomolecular lipid membranes.生物分子脂质膜的电流-电压曲线
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