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脂质-硫辛酸体系的平衡:单层膜、微电泳和界面张力研究。

The Equilibria in Lipid-Lipoic Acid Systems: Monolayers, Microelectrophoretic and Interfacial Tension Studies.

机构信息

Faculty of Chemistry, University of Bialystok, Ciolkowskiego 1K, 15-245 Bialystok, Poland.

Faculty of Mechatronics, Kazimierz Wielki University, Chodkiewicza 30, 85-867 Bydgoszcz, Poland.

出版信息

Molecules. 2020 Aug 12;25(16):3678. doi: 10.3390/molecules25163678.

Abstract

In this examination, we investigated the effect of lipoic acid (LA) on the properties of biological membrane models (monolayers, bilayers, and liposomes) formed from phosphatidylcholine (PC) or phosphatidylserine (PS) using the Langmuir, microelectrophoresis, and interfacial tension methods. The Langmuir technique allowed us to calculate the π-A isotherms and determine the molecular surface areas of pure and mixed monolayers. Using mathematical equations, we established that LA and the lipids formed complexes at a 1:1 ratio. The interfacial tension method was based on Young and Laplace's equation. We assumed the formation of a 1:1 complex in the PC-LA system. Using the mathematical relationships, we derived the parameters characterizing the resulting complex, i.e., the surface occupied by the complex and the interfacial tension and stability constant of the formed complex. The microelectrophoretic method was used to determine the dependence of the zeta potential of the lipid membranes as a function of the pH (pH 2 to 10) of the electrolyte solution. The results indicate that modification of PC or PS membranes with LA affects changes in the zeta potential and the isoelectric point values.

摘要

在这项研究中,我们使用 Langmuir 技术、微电泳技术和界面张力法,研究了游离酸 (LA) 对由磷脂酰胆碱 (PC) 或磷脂酰丝氨酸 (PS) 形成的生物膜模型(单层膜、双层膜和脂质体)性质的影响。Langmuir 技术使我们能够计算出 π-A 等温线,并确定纯和混合单层膜的分子表面积。通过数学方程式,我们确定 LA 和脂质以 1:1 的比例形成复合物。界面张力法基于 Young 和 Laplace 方程。我们假设在 PC-LA 系统中形成 1:1 复合物。通过数学关系,我们推导出了表征所得复合物的参数,即复合物占据的表面积以及形成的复合物的界面张力和稳定常数。微电泳法用于确定脂质膜的 ζ 电位随电解质溶液 pH 值(2 至 10)的变化关系。结果表明,LA 对 PC 或 PS 膜的修饰会影响 ζ 电位和等电点值的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64cd/7465766/2fd62698e8d2/molecules-25-03678-g001.jpg

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