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微工程材料上的分子脂质膜。

Molecular Lipid Films on Microengineering Materials.

机构信息

Department of Physics , Chalmers University of Technology , Fysikgränd 3 , 412 96 Gothenburg , Sweden.

Centre for Molecular Medicine Norway, Faculty of Medicine , University of Oslo , Gaustadalléen 21 , 0349 Oslo , Norway.

出版信息

Langmuir. 2019 Aug 13;35(32):10286-10298. doi: 10.1021/acs.langmuir.9b01120. Epub 2019 Aug 1.

Abstract

In this study, we have systematically investigated the formation of molecular phospholipid films on a variety of solid substrates fabricated from typical surface engineering materials and the fluidic properties of the lipid membranes formed on these substrates. The surface materials comprise of borosilicate glass, mica, SiO, Al (native oxide), AlO, TiO, ITO, SiC, Au, Teflon AF, SU-8, and graphene. We deposited the lipid films from small unilamellar vesicles (SUVs) by means of an open-space microfluidic device, observed the formation and development of the films by laser scanning confocal microscopy, and evaluated the mode and degree of coverage, fluidity, and integrity. In addition to previously established mechanisms of lipid membrane-surface interaction upon bulk addition of SUVs on solid supports, we observed nontrivial lipid adhesion phenomena, including reverse rolling of spreading bilayers, spontaneous nucleation and growth of multilamellar vesicles, and the formation of intact circular patches of double lipid bilayer membranes. Our findings allow for accurate prediction of membrane-surface interactions in microfabricated devices and experimental environments where model membranes are used as functional biomimetic coatings.

摘要

在这项研究中,我们系统地研究了各种典型表面工程材料制备的固体基底上分子磷脂膜的形成以及在这些基底上形成的脂质膜的流体性质。表面材料包括硼硅酸盐玻璃、云母、SiO、Al(自然氧化物)、AlO、TiO、ITO、SiC、Au、Teflon AF、SU-8 和石墨烯。我们通过开放式微流控装置从小单层囊泡(SUV)中沉积脂质膜,通过激光扫描共聚焦显微镜观察膜的形成和发展,并评估其覆盖模式和程度、流动性和完整性。除了在固体支持物上大量添加 SUV 时脂质膜-表面相互作用的先前确立的机制之外,我们还观察到非平凡的脂质粘附现象,包括双层膜的反向滚动、多层囊泡的自发成核和生长以及完整的双层脂质膜的圆形斑块的形成。我们的发现允许在微加工设备和实验环境中对膜-表面相互作用进行准确预测,其中模型膜被用作功能仿生涂层。

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