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An Automated Microfluidic System for the Generation of Droplet Interface Bilayer Networks

机译:用于生成液滴接口双层网络的自动化微流系统

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摘要

Networks of droplets, in which aqueous compartments are separated by lipid bilayers, have shown great potential as a model for biological transmembrane communication. We present a microfluidic system which allows for on-demand generation of droplets that are hydrodynamically locked in a trapping structure. As a result, the system enables the formation of a network of four droplets connected via lipid bilayers and the positions of each droplet in the network can be controlled thanks to automation of microfluidic operations. We perform electrophysiological measurements of ionic currents indicating interactions between nanopores and small molecules to prove the potential of the device in screening of the inhibitors acting on membrane proteins. We also demonstrate, for the first time, a microfluidic droplet interface bilayer (DIB) system in which the testing of inhibitors can be performed without direct contact between the tested sample and the electrodes recording picoampere currents.
机译:水滴网络(其中的水室被脂质双层隔离)已显示出巨大的潜力,可作为生物跨膜通讯的模型。我们提出了一种微流体系统,可以按需生成液滴,这些液滴在流体动力学上被锁定在捕集结构中。结果,该系统能够形成通过脂质双层连接的四个液滴的网络,并且由于微流体操作的自动化,可以控制网络中每个液滴的位置。我们执行离子电流的电生理测量,以指示纳米孔和小分子之间的相互作用,以证明该装置在筛选作用于膜蛋白的抑制剂方面的潜力。我们还首次展示了微流液滴界面双层(DIB)系统,其中可以在不直接接触被测样品和记录皮安电流的电极之间进行抑制剂测试的情况。

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