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Optimization of Brownian ratchets for the manipulation of charged components within supported lipid bilayers

机译:褐色棘轮优化用于操纵支撑脂质双层的带电部件

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摘要

In probability theory, there is a counter-intuitive result that it is possible to construct a winning strategy from two individually losing (or at most breaking-even) "games" by alternating between them. The work presented here demonstrates the application of this principle to supported lipid bilayers (SLBs) in order to create directed motion of charged lipid components in the membrane, which was achieved through the use of "Brownian ratchets" in patterned SLBs. Both a finite element analysis model and an experimental setup have been used to investigate the role of key parameters for the operation of these ratchets: (1) the asymmetry of the ratchet teeth and (2) the relation of the ratchet height to the period of the applied electric field. Importantly, we find that the efficiency of the ratchet for a given charged species is dependent on the diffusion coefficient. This opens the possibility for separation of membrane species according to their size or viscous drag coefficient within the membrane.
机译:在概率论中,有一个违反直觉的结果,即可以通过在两个单独输掉(或至多收支平衡)的“游戏”之间进行交替来构造获胜策略。此处介绍的工作证明了该原理在支持脂质双层(SLB)上的应用,以便在膜中产生带电脂质成分的定向运动,这是通过在图案化SLB中使用“布朗棘轮”实现的。有限元分析模型和实验装置均已用于研究这些棘轮操作的关键参数的作用:(1)棘轮齿的不对称性;(2)棘轮高度与周期的关系。施加的电场。重要的是,我们发现对于给定的带电物种,棘轮的效率取决于扩散系数。这打开了根据膜种类的大小或膜内粘性阻力系数分离膜种类的可能性。

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