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支持脂质双层形成:超越囊泡融合。

Supported Lipid Bilayer Formation: Beyond Vesicle Fusion.

机构信息

School of Chemical Engineering , Sungkyunkwan University , Suwon 16419 , Republic of Korea.

School of Materials Science and Engineering , Nanyang Technological University , 50 Nanyang Avenue , Singapore 639798 , Singapore.

出版信息

Langmuir. 2020 Feb 18;36(6):1387-1400. doi: 10.1021/acs.langmuir.9b03706. Epub 2020 Feb 10.

DOI:10.1021/acs.langmuir.9b03706
PMID:31990559
Abstract

Supported lipid bilayers (SLBs) are cell-membrane-mimicking platforms that can be formed on solid surfaces and integrated with a wide range of surface-sensitive measurement techniques. SLBs are useful for unravelling details of fundamental membrane biology and biophysics as well as for various medical, biotechnology, and environmental science applications. Thus, there is high interest in developing simple and robust methods to fabricate SLBs. Currently, vesicle fusion is a popular method to form SLBs and involves the adsorption and spontaneous rupture of lipid vesicles on a solid surface. However, successful vesicle fusion depends on high-quality vesicle preparation, and it typically works with a narrow range of material supports and lipid compositions. In this Feature Article, we summarize current progress in developing two new SLB fabrication techniques termed the solvent-assisted lipid bilayer (SALB) and bicelle methods, which have compelling advantages such as simple sample preparation and compatibility with a wide range of material supports and lipid compositions. The molecular self-assembly principles underpinning the two strategies and important experimental parameters are critically discussed, and recent application examples are presented. Looking forward, we envision that these emerging SLB fabrication strategies can be widely adopted by specialists and nonspecialists alike, paving the way to enriching our understanding of lipid membrane properties and realizing new application possibilities.

摘要

支持的脂质双层 (SLB) 是模仿细胞膜的平台,可以在固体表面上形成,并与广泛的表面敏感测量技术集成。SLB 可用于揭示基本膜生物学和生物物理学的细节,以及用于各种医学、生物技术和环境科学应用。因此,人们对开发简单、稳健的方法来制备 SLB 非常感兴趣。目前,囊泡融合是形成 SLB 的一种流行方法,涉及脂质囊泡在固体表面上的吸附和自发破裂。然而,成功的囊泡融合取决于高质量的囊泡制备,并且通常只适用于窄范围的材料支撑和脂质组成。在这篇特写文章中,我们总结了目前在开发两种新的 SLB 制备技术方面的进展,这两种技术分别称为溶剂辅助脂质双层 (SALB) 和双胶束方法,它们具有简单的样品制备和与广泛的材料支撑和脂质组成兼容等优势。我们批判性地讨论了这两种策略的分子自组装原理和重要的实验参数,并介绍了最近的应用实例。展望未来,我们设想这些新兴的 SLB 制备策略可以被专家和非专家广泛采用,为丰富我们对脂质膜性质的理解和实现新的应用可能性铺平道路。

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