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相互作用力和膜电荷可调性:不同 pH 值条件下含油酸的膜。

Interaction forces and membrane charge tunability: Oleic acid containing membranes in different pH conditions.

机构信息

Department of Chemical Engineering, University of California Davis, 95616, USA.

Division of Chemical Engineering, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyamacho, Toyonaka, Osaka 560-8531, Japan.

出版信息

Biochim Biophys Acta Biomembr. 2017 Feb;1859(2):211-217. doi: 10.1016/j.bbamem.2016.11.001. Epub 2016 Nov 4.

Abstract

Oleic acid is known to interact with saturated lipid molecules and increase the fluidity of gel phase lipid membranes. In this work, the thermodynamic properties of mixed monolayers of 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) and oleic acid at the air-water interface were determined using Langmuir isotherms. The isotherm study revealed an attractive interaction between oleic acid and DPPC. The incorporation of oleic acid also monotonically decreased the elastic modulus of the monolayer indicative of higher fluidity with increasing oleic acid content. Using the surface force apparatus, intermembrane force-distance profiles were obtained for substrate supported DPPC membranes containing 30mol% oleic acid at pH5.8 and 7.4. Three different preparation conditions resulted in distinct force profiles. Membranes prepared in pH5.8 subphase had a low number of nanoscopic defects ≤1% and an adhesion magnitude of ~0.6mN/m. A slightly higher defect density of 1-4% was found for membranes prepared in a physiological pH7.4 subphase. The presence of the exposed hydrophobic moieties resulted in a higher adhesion magnitude of 2.9mN/m. Importantly, at pH7.4, some oleic acid deprotonates resulting in a long-range electrostatic repulsion. Even though oleic acid increased the DPPC bilayer fluidity and the number of defects, no membrane restructuring was observed indicating that the system maintained a stable configuration.

摘要

油酸已知与饱和脂质分子相互作用,增加凝胶相脂质膜的流动性。在这项工作中,使用 Langmuir 等温线法确定了 1,2-二棕榈酰-sn-甘油-3-磷酸胆碱 (DPPC) 和油酸在气-水界面的混合单层的热力学性质。等温线研究表明油酸和 DPPC 之间存在吸引力相互作用。油酸的掺入也单调地降低了单层的弹性模量,表明随着油酸含量的增加流动性更高。使用表面力仪,获得了在 pH5.8 和 7.4 下含有 30mol%油酸的基底支撑 DPPC 膜的膜间力-距离曲线。三种不同的制备条件导致了明显不同的力曲线。在 pH5.8 亚相中制备的膜具有低数量的纳米级缺陷≤1%,粘附强度约为 0.6mN/m。在生理 pH7.4 亚相中制备的膜中发现了稍高的缺陷密度 1-4%。暴露的疏水性部分的存在导致更高的粘附强度 2.9mN/m。重要的是,在 pH7.4 时,一些油酸去质子化导致长程静电排斥。尽管油酸增加了 DPPC 双层的流动性和缺陷数量,但没有观察到膜重构,表明该系统保持了稳定的构型。

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