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Molecular separation in the lipid bilayer medium: electrophoretic and self-spreading approaches

机译:脂质双层介质中的分子分离:电泳和自扩散方法

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Molecular separation in a microchannel is a key technology for future miniature devices. Because of growing advances in microfabrication techniques, we now have various choices of microscopic molecular separation systems. Recent progress in this field is reviewed in this manuscript. In particular, the use of the lipid bilayer as a separation medium is highlighted, because of its possible application to the manipulation of relatively small biomaterials such as membrane proteins and lipids. In this context, an approach based on electrophoresis is reviewed for molecular separation in the bilayer. Although the methods based on electrophoresis are effective, we will also focus on their limitation, i.e., only charged molecules can be manipulated. To solve this dilemma, we review new techniques based on the self-spreading nature of the lipid bilayer. In this method, there is no need to input an external field, such as an electric field, to achieve molecular separation. Phenomenological insights into the self-spreading nature and newly proposed molecular separation effects are shown in detail. This novel concept enables us to establish a completely unbiased molecular separation system in future microscopic and nanoscopic devices.
机译:微通道中的分子分离是未来微型设备的一项关键技术。由于微细加工技术的发展日新月异,我们现在可以选择多种微观分子分离系统。本手稿回顾了该领域的最新进展。特别地,强调了将脂质双层用作分离介质,因为其可能应用于操纵相对较小的生物材料,例如膜蛋白和脂质。在这种情况下,对基于电泳的方法进行了研究,以用于双层中的分子分离。尽管基于电泳的方法是有效的,但我们还将关注它们的局限性,即只能操作带电分子。为了解决这个难题,我们回顾了基于脂质双层的自扩散特性的新技术。在该方法中,不需要输入外部电场例如电场来实现分子分离。详细介绍了现象学对自我传播性质和新提出的分子分离作用的见解。这个新颖的概念使我们能够在未来的微观和纳米设备中建立一个完全无偏的分子分离系统。

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