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Biotechnology Applications of Tethered Lipid Bilayer Membranes

机译:束缚脂质双层膜的生物技术应用

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摘要

The importance of cell membranes in biological systems has prompted the development of model membrane platforms that recapitulate fundamental aspects of membrane biology, especially the lipid bilayer environment. Tethered lipid bilayers represent one of the most promising classes of model membranes and are based on the immobilization of a planar lipid bilayer on a solid support that enables characterization by a wide range of surface-sensitive analytical techniques. Moreover, as the result of molecular engineering inspired by biology, tethered bilayers are increasingly able to mimic fundamental properties of natural cell membranes, including fluidity, electrical sealing and hosting transmembrane proteins. At the same time, new methods have been employed to improve the durability of tethered bilayers, with shelf-lives now reaching the order of weeks and months. Taken together, the capabilities of tethered lipid bilayers have opened the door to biotechnology applications in healthcare, environmental monitoring and energy storage. In this review, several examples of such applications are presented. Beyond the particulars of each example, the focus of this review is on the emerging design and characterization strategies that made these applications possible. By drawing connections between these strategies and promising research results, future opportunities for tethered lipid bilayers within the biotechnology field are discussed.
机译:细胞膜在生物系统中的重要性促使模型膜平台的发展概述了膜生物学的基本方面,尤其是脂质双层环境。束缚的脂质双层代表了最有前途的一类模型膜,并且基于平面脂质双层固定在固体支持物上,该固体支持物能够通过多种表面敏感的分析技术进行表征。此外,由于受到生物学启发的分子工程技术的发展,束缚双层越来越能够模仿天然细胞膜的基本特性,包括流动性,电密封和宿主跨膜蛋白。同时,已经采用了新方法来改善拴系双层的耐久性,目前其保质期达到数周和数月。总之,拴系脂质双层的功能为生物技术在医疗保健,环境监测和能量存储中的应用打开了大门。在这篇综述中,给出了这种应用的几个例子。除了每个示例的细节之外,本文的重点还在于使这些应用成为可能的新兴设计和表征策略。通过在这些策略和有希望的研究结果之间建立联系,讨论了生物技术领域内拴系脂质双层的未来机会。

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