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Nanopore lipid bilayer formed by self-spreading method

机译:通过自扩散方法形成的纳米孔脂质双层

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Black lipid membrane suspending on a solid-state nanopore (nano-black lipid membranes; nano-BLMs) is a functional application to detect single-channel activities with a long lifetime. However, folding and painting techniques, which are traditionally used to form nano-BLMs, only have a low success rate because of their complicated procedure. Herein, we report on the self-spreading method on 50 nm pore size polycarbonate membrane filter to form nano-BLMs by a simple procedure. Our results show that the nano-BLMs have been successfully formed on the membrane filter. The spreading velocity of the nano-BLMs exhibits a square root behavior, v ~ t~(-(1/2)), which is in great agreement with the previous research. The experiments with fluorescence recovery after photobleaching show the recovery of a photobleached area in our nano-BLMs. We also measure the elastic response of our nano-BLMs by using an atomic force microscope, and our results demonstrate that the lipid bilayer is spanning on the pore of membrane filter. We also discuss the effect of temperature and the roughness of supporting surface on the spreading speed of lipid bilayer.
机译:悬浮在固态纳米孔上的黑色脂质膜(纳米黑色脂质膜;纳米BLM)是一种功能性应用,可检测长寿命的单通道活性。然而,传统上用于形成纳米BLM的折叠和绘画技术由于其复杂的过程而仅具有较低的成功率。在本文中,我们报告了一种通过简单程序在50 nm孔径的聚碳酸酯膜滤膜上自扩散形成纳米BLM的方法。我们的结果表明,纳米BLM已成功形成在膜滤器上。纳米BLM的扩散速度表现出平方根行为,v〜t〜(-(1/2)),与先前的研究非常吻合。光漂白后荧光恢复的实验表明,我们的纳米BLM中光漂白区域的恢复。我们还使用原子力显微镜测量了纳米BLM的弹性响应,我们的结果表明脂质双层跨在膜滤器的孔上。我们还讨论了温度和支撑表面的粗糙度对脂质双层扩散速度的影响。

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