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固体支撑脂质双层膜:从生物物理研究到传感器设计

Solid supported lipid bilayers: From biophysical studies to sensor design.

作者信息

Castellana Edward T, Cremer Paul S

机构信息

Department of Chemistry, Texas A & M University, College Station, TX 77843, United States.

出版信息

Surf Sci Rep. 2006 Nov 15;61(10):429-444. doi: 10.1016/j.surfrep.2006.06.001. Epub 2006 Sep 25.

Abstract

The lipid bilayer is one of the most eloquent and important self-assembled structures in nature. It not only provides a protective container for cells and sub-cellular compartments, but also hosts much of the machinery for cellular communication and transport across the cell membrane. Solid supported lipid bilayers provide an excellent model system for studying the surface chemistry of the cell. Moreover, they are accessible to a wide variety of surface-specific analytical techniques. This makes it possible to investigate processes such as cell signaling, ligand-receptor interactions, enzymatic reactions occurring at the cell surface, as well as pathogen attack. In this review, the following membrane systems are discussed: black lipid membranes, solid supported lipid bilayers, hybrid lipid bilayers, and polymer cushioned lipid bilayers. Examples of how supported lipid membrane technology is interfaced with array based systems by photolithographic patterning, spatial addressing, microcontact printing, and microfluidic patterning are explored. Also, the use of supported lipid bilayers in microfluidic devices for the development of lab-on-a-chip based platforms is examined. Finally, the utility of lipid bilayers in nanotechnology and future directions in this area are discussed.

摘要

脂质双层是自然界中最具说服力且最重要的自组装结构之一。它不仅为细胞和亚细胞区室提供了一个保护性的容器,还承载了许多细胞通讯和跨细胞膜运输的机制。固体支撑脂质双层为研究细胞的表面化学提供了一个出色的模型系统。此外,它们适用于多种表面特异性分析技术。这使得研究诸如细胞信号传导、配体 - 受体相互作用、细胞表面发生的酶促反应以及病原体攻击等过程成为可能。在本综述中,将讨论以下膜系统:黑脂质膜、固体支撑脂质双层、混合脂质双层和聚合物缓冲脂质双层。探讨了通过光刻图案化、空间寻址、微接触印刷和微流控图案化等方法将支撑脂质膜技术与基于阵列的系统相结合的实例。此外,还研究了支撑脂质双层在微流控装置中用于开发基于芯片实验室平台的应用。最后,讨论了脂质双层在纳米技术中的实用性以及该领域的未来发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/180a/7114318/9d76ab84210c/gr1.jpg

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