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基于不可逆过程热力学的脂质单层和双层新模型。

A new model for lipid monolayer and bilayers based on thermodynamics of irreversible processes.

机构信息

Instituto de Bionanotecnología del NOA (INBIONATEC), Universidad Nacional de Santiago de Estero (UNSE- CONICET), Villa el Zanjón, Santiago del Estero, Argentina.

Laboratorio de Biointerfases y Sistemas Biomiméticos, Centro de Investigaciones en Biofisica Aplicada y Alimentos (CIBAAL) (UNSE-CONICET), Villa el Zanjón, Santiago del Estero, Argentina.

出版信息

PLoS One. 2019 Apr 4;14(4):e0212269. doi: 10.1371/journal.pone.0212269. eCollection 2019.

Abstract

Lipid monolayers are used as experimental model systems to study the physical chemical properties of biomembranes. With this purpose, surface pressure/area per molecule isotherms provide a way to obtain information on packing and compressibility properties of the lipids. These isotherms have been interpreted considering the monolayer as a two dimensional ideal or van der Waals gas without contact with the water phase. These modelistic approaches do not fit the experimental results. Based on Thermodynamics of Irreversible Processes (TIP), the expansion/compression process is interpreted in terms of coupled phenomena between area changes and water fluxes between a bidimensional solution of hydrated head groups in the monolayer and the bulk solution. The formalism obtained can reproduce satisfactorily the surface pressure/area per lipid isotherms of monolayer in different states and also can explain the area expansion and compression produced in particles enclosed by bilayers during osmotic fluxes. This novel approach gives relevance to the lipid-water interaction in restricted media near the membrane and provides a formalism to understand the thermodynamic and kinetic response of biointerphases to biological effectors.

摘要

脂质单层被用作实验模型系统,以研究生物膜的物理化学性质。为此,表面压力/分子面积等温线提供了一种获取有关脂质堆积和可压缩性的信息的方法。这些等温线是基于将单层视为二维理想气体或没有与水相接触的范德华气体来解释的。这些模型方法与实验结果不相符。基于不可逆过程热力学(TIP),扩展/压缩过程是根据在单层中的水合头部基团的二维溶液与体相溶液之间的面积变化和水通量之间的偶联现象来解释的。所得到的形式主义可以令人满意地再现不同状态下的单层表面压力/脂质比等温线,也可以解释在渗透通量期间双层包裹的颗粒中产生的面积扩展和压缩。这种新方法使人们更加关注靠近膜的受限介质中的脂质-水相互作用,并提供了一种形式主义来理解生物界面对生物效应物的热力学和动力学响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6d8/6448890/c0f00c9a767f/pone.0212269.g001.jpg

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