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Stable Lipid Bilayers Based on Micro- and Nano-Fabrication as a Platform for Recording Ion-Channel Activities

机译:基于微型和纳米制造的稳定的脂质双层作为记录离子通道活动的平台

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In this review, we will discuss our recent approaches for the formation of mechanically stable bilayer lipid membranes (BLMs) by combining with BLM formation and micro- and nano-fabrication techniques. BLMs were prepared across a microaperture fabricated in silicon (Si) chips or nanoporous alumina films using a minimized amount of organic solvent. Although BLMs spanned over the porous alumina film showed better electrical properties, such as background current noise and current transient, BLMs suspended in a thin Si3N4 septum showed a much superior BLM stability. The BLMs showed tolerance to a high voltage of ±1 V, a membrane lifetime of 40 h, and tolerance to repetitive solution exchanges. Application to a drug screening system has been examined by using the human ether-a-go-go-related gene (hERG) potassium channel as an illustrative example. The potentiality of the present system as a platform of the high-throughput analysis for ion-channel protein is also discussed.
机译:在本文中,我们将通过与BLM形成和微型和纳米制造技术相结合,讨论我们最近形成机械稳定双层脂质膜(BLMS)的方法。使用最小化的有机溶剂在硅(Si)芯片或纳米多孔氧化铝膜中制备的微自复印件中制备了Blms。虽然在多孔氧化铝膜上跨越Blms,但诸如背景电流噪声和电流瞬态,但悬浮在薄的Si3N4隔膜中的Blms显示出很高的BLM稳定性。 BLMS显示出对±1V的高电压,膜寿命> 40小时的耐受性,以及对重复溶液交换的耐受性。一种药物筛选系统中的应用已经由使用人检查醚-A-去,去相关基因(hERG的)钾通道作为一个说明性示例。还讨论了本系统的潜在能力作为离子通道蛋白的高通量分析的平台。

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