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同系单甘油脂液滴双层对水透过性的链长和不饱和度的焓效应。

Enthalpic Effects of Chain Length and Unsaturation on Water Permeability across Droplet Bilayers of Homologous Monoglycerides.

机构信息

Department of Chemistry, Iona College , 715 North Avenue, New Rochelle, New York 10801, United States.

出版信息

Langmuir. 2017 Jan 31;33(4):900-912. doi: 10.1021/acs.langmuir.6b03932. Epub 2017 Jan 20.

Abstract

A deeper understanding of unassisted passive transport processes can better delineate basic lipid dynamics in biological membranes. A droplet interface bilayer (DIB) is made by contacting two aqueous droplets covered with a lipid monolayer, and has increasingly been employed as a model artificial biological membrane. In this study, we have investigated the effect of acyl chain structure of amphiphilic monoglycerides on the osmotic permeability of water across DIB membranes composed of these monoglycerides, where the acyl chain length (C14-C24), number of double bonds (1-4), and the position of double bond are varied systematically along the acyl chains. Both permeability values and activation energies have been extracted for water transport across a lipid bilayer formed of a homologous series of lipids, allowing us to make ready comparisons between the different lipids and potentially better elucidate the contributions that molecular motifs make to the permeation process.

摘要

对非协助性被动传输过程的更深入理解,可以更好地描绘生物膜中的基本脂质动态。通过接触两个覆盖有脂质单层的水相液滴,可以形成液滴界面双层(DIB),并且它越来越多地被用作模型人工生物膜。在这项研究中,我们研究了亲脂性单甘油脂的酰链结构对由这些单甘油脂组成的 DIB 膜中水的渗透渗透性的影响,其中酰链长度(C14-C24),双键数(1-4)和双键的位置沿酰链系统变化。已经为穿过由一系列同源脂质形成的脂质双层的水传输提取了渗透率值和活化能,这使我们能够在不同脂质之间进行便捷的比较,并有可能更好地阐明分子基序对渗透过程的贡献。

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