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Handling of artificial membranes using electrowetting-actuated droplets on a microfluidic device combined with integrated pA-measurements

机译:结合集成的pA测量在微流控设备上使用电润湿驱动的液滴处理人造膜

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摘要

Artificial membranes, as a controllable environment, are an essential tool to study membrane proteins. Electrophysiology provides information about the ion transport mechanism across a membrane at the single-protein level. Unfortunately, high-throughput studies and screening are not accessible to electrophysiology because it is a set of not automated and technically delicate methods. Therefore, it is necessary to automate and parallelize electrophysiology measurement in artificial membranes. Here, we present a first step toward this goal: the fabrication and characterization of a microfluidic device integrating electrophysiology measurements and the handling of an artificial membrane which includes its formation, its displacement and the separation of its leaflets using electrowetting actuation of sub-μL droplets. To validate this device, we recorded the insertion of a model porin, α-hemolysin.
机译:作为可控制的环境,人造膜是研究膜蛋白的重要工具。电生理学提供了有关在单个蛋白质水平上跨膜离子迁移机制的信息。不幸的是,电生理无法进行高通量的研究和筛查,因为这是一组不自动化且技术上不灵敏的方法。因此,有必要使人工膜中的电生理测量自动化和并行化。在这里,我们向该目标迈出了第一步:集成电生理学测量和人工膜处理的微流控设备的制造和表征,包括使用亚微升液滴的电湿法驱动其形成,移位和分离小叶。为了验证该装置,我们记录了模型孔蛋白α-溶血素的插入。

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