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An approach to the stabilization of lipid bilayers incorporating ion channels for biosensing applications

机译:一种稳定脂质双层抑制用于生物传感器的离子通道的方法

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Two aspects of the development of a practical ion channel-based biosensor are discussed: (1) establishment of a stable lipid bilayer system that maintains ion channel function and (2) production of a silicon-based bilayer support device. The current research focuses on refinement of the patch-clamp technique used to study ion channel function in artificial bilayers and comparison of the adhesion of the various lipid monolayers and bilayers to that of amorphous silica. Bilayers of dioleoyl phosphatidylethanolamine (DOPE) have been formed reproducibly, and initial results show that alamethicin ion channel function can be obtained in DOPE bilayers.
机译:讨论了基于实际离子通道的生物传感器的发展的两个方面:(1)建立稳定的脂质双层系统,其保持离子通道功能和(2)生产的基于硅基双层支撑装置。目前的研究侧重于改进用于研究人造双层中的离子通道功能的贴片技术,并比较各种脂质单层和双层与非晶二氧化硅的粘合性。 Dioleyl磷脂酰乙醇胺(掺杂)的双层是可重复形成的,初始结果表明,在涂料双层中可以获得阿拉美霉素离子通道功能。

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