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带电脂质膜上的静电相互作用。I. pH值和单价阳离子对膜结构的影响。

Electrostatic interactions at charged lipid membranes. I. Effects of pH and univalent cations on membrane structure.

作者信息

Tyäuble H, Teubner M, Woolley P, Eibl H

出版信息

Biophys Chem. 1976 Jul;4(4):319-42. doi: 10.1016/0301-4622(76)80013-0.

Abstract

Electrostatic interactions at charged lipid membranes make a significant contribution to the free energy of the system, and can be varied within a wide range by alteration either of the membrane's surface charge density or of the concentration of electrolytes in the surrounding medium. Changes in the charged membrane's structure, such as the ordered in equilibrium fluid phase transition, can thus be induced at constant temperature by variations in pH and salt concentration. An adequate quantitative description of these phenomena is obtained from the Gouy--Chapman theory. The good agreement between theory and experiment confirms that the expression derived for the electrostatic free energy especially in respect of its positive sign is correct. The classical expression derived for the electrostatic free energy, especially in respect of its positive sign, is correct. The classical expression for the "free energy of the double layer" derived by Verwey and Overbeek, which has a negative sign, is not applicable to lipid membranes with ionizable polar groups.

摘要

带电脂质膜上的静电相互作用对系统的自由能有显著贡献,并且可以通过改变膜的表面电荷密度或周围介质中电解质的浓度在很宽的范围内变化。因此,在恒定温度下,通过改变pH值和盐浓度,可以诱导带电膜结构的变化,如有序的平衡流体相转变。从 Gouy-Chapman 理论可以得到对这些现象的充分定量描述。理论与实验之间的良好一致性证实了所推导的静电自由能表达式,特别是其正号部分是正确的。经典的静电自由能表达式,特别是其正号部分,是正确的。Verwey 和 Overbeek 推导的“双层自由能”经典表达式带有负号,不适用于具有可电离极性基团的脂质膜。

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