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解析支持脂质双层形成动力学:渗透效应。

Unraveling supported lipid bilayer formation kinetics: osmotic effects.

机构信息

CIC biomaGUNE, Paseo Miramón 182, San Sebastián 20009, Spain.

出版信息

Langmuir. 2013 Feb 19;29(7):2282-8. doi: 10.1021/la304197m. Epub 2013 Feb 5.

Abstract

Solid-supported lipid bilayers are used as cell membrane models and form the basis of biomimetic and biosensor platforms. The mechanism of their formation from adsorbed liposomes is not well-understood. Using membrane-permeable solute glycerol, impermeable solutes sucrose and dextran, and a pore forming peptide melittin, we studied experimentally how osmotic effects affect the kinetics of the adsorbed liposome-to-bilayer transition. We find that its rate is enhanced if adsorbed liposomes are made permeable but is not significantly retarded by impermeable solutes. The results are explained in terms of adsorbed liposome deformation and formation of transmembrane pores.

摘要

固载脂质双层被用作细胞膜模型,并构成仿生和生物传感器平台的基础。然而,它们从吸附的脂质体中形成的机制还没有被很好地理解。使用膜通透性溶质甘油、非通透性溶质蔗糖和葡聚糖以及成孔肽蜂毒素,我们实验研究了渗透压效应对吸附的脂质体到双层转变的动力学的影响。我们发现,如果吸附的脂质体变得可渗透,其速率会增强,但非通透性溶质不会显著延迟。结果可以根据吸附的脂质体变形和跨膜孔的形成来解释。

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