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Spatiotemporal dynamics of solvent-assisted lipid bilayer formation

机译:溶剂辅助脂质双层形成的时空动力学

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摘要

The solvent-assisted lipid bilayer (SALB) method offers a general strategy to fabricate supported lipid bilayers on solid surfaces. In this method, lipids dissolved in alcohol are deposited on the target substrate in parallel with their aggregation during exchange with aqueous buffer solution which promotes spontaneous bilayer formation. Herein, a combination of experimental and theoretical approaches is employed in order to understand the key aspects of the SALB formation process. Epifluorescence microscopy experiments are conducted in order to measure the spatiotemporal dynamics of bilayer formation on a glass substrate in a microfluidic channel. Corresponding snapshots of bilayer formation at different stages are rationalized by a numerical simulation of solvent displacement inside the channel. Comparing simulation with experiment indicates that in close proximity to the side walls of the present setup, the bilayer formation is confined to a relatively thin region behind the moving solvent displacement front.
机译:溶剂辅助脂质双层(SALB)方法提供了在固体表面上制备支持的脂质双层的一般策略。在这种方法中,溶解在酒精中的脂质在与缓冲液交换过程中与其聚集平行地沉积在目标底物上,从而促进了自发双层的形成。在本文中,将实验和理论方法相结合以了解SALB形成过程的关键方面。进行落射荧光显微镜实验以测量在微流体通道中在玻璃基板上双层形成的时空动力学。通过对通道内溶剂位移的数值模拟,可以合理化不同阶段双层形成的相应快照。模拟与实验的比较表明,在本装置侧壁的附近,双层的形成被限制在移动溶剂置换前沿之后的一个相对较薄的区域。

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