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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effective Brownian Ratchet Separation by a Combination of Molecular Filtering and a Self-Spreading Lipid Bilayer System
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Effective Brownian Ratchet Separation by a Combination of Molecular Filtering and a Self-Spreading Lipid Bilayer System

机译:通过分子过滤和自扩散脂质双层系统的组合有效的布朗棘轮分离。

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摘要

A new molecular manipulation method in the self-spreading lipid bilayer membrane by combining Brownian ratchet and molecular filtering effects is reported. The newly designed ratchet obstacle was developed to effectively separate dye?lipid molecules. The self-spreading lipid bilayer acted as both a molecular transport system and a manipulation medium. By controlling the size and shape of ratchet obstacles, we achieved a significant increase in the separation angle for dye? lipid molecules compared to that with the previous ratchet obstacle. A clear difference was observed between the experimental results and the simple random walk simulation that takes into consideration only the geometrical effect of the ratchet obstacles. This difference was explained by considering an obstacle-dependent local decrease in molecular diffusivity near the obstacles, known as the molecular filtering effect at nanospace. Our experimental findings open up a novel controlling factor in the Brownian ratchet manipulation that allow the efficient separation of molecules in the lipid bilayer based on the combination of Brownian ratchet and molecular filtering effects.
机译:结合布朗棘轮和分子过滤作用,报道了一种新的自扩散脂质双层膜分子操纵方法。新设计的棘轮式障碍物可有效分离染料脂质分子。自扩散脂质双层既充当分子转运系统又充当操纵介质。通过控制棘轮障碍物的大小和形状,我们实现了染料分离角的显着增加。脂质分子与先前的棘轮障碍相比。在实验结果和简单的随机行走模拟之间观察到明显的差异,该模拟仅考虑了棘轮障碍的几何效应。通过考虑障碍物附近的分子扩散率的障碍相关局部降低来解释这种差异,这被称为纳米空间的分子过滤效应。我们的实验发现在布朗棘轮操纵中打开了一个新的控制因素,该控制因素基于布朗棘轮和分子过滤作用的结合,可以有效分离脂质双层中的分子。

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