Suzuki Hiroaki, Tabata Kazuhito V, Noji Hiroyuki, Takeuchi Shoji
Institute of Industrial Science, The University of Tokyo, Meguro-ku, Tokyo 153-8505, Japan.
Biosens Bioelectron. 2007 Jan 15;22(6):1111-5. doi: 10.1016/j.bios.2006.04.013. Epub 2006 May 30.
Planar lipid bilayers are used for functional studies of ion channel proteins using electrophysiological techniques. We have been developing a plastic micro-fluidic device for the reconstitution of planar lipid bilayers and electrophysiological recordings toward a "membrane protein chip" for high-throughput screening. In the previous report [Suzuki, H., Tabata, K.V., Noji, H., Takeuchi, S., 2006. Highly reproducible method of planar lipid bilayer reconstitution in polymethyl methacrylate microfluidic chip. Langmuir 22 (4), 1937-1942], we presented the method and device in which the reproducibility of planar lipid bilayers reached 90%, and multiple bilayers were formed simultaneously. In this communication, we show that our device has excellent electric properties suitable for ion channel analysis down to single molecular level. Additional aspects on the optical accessibility and controllability on lipid bilayer formation are also presented.
平面脂质双层被用于使用电生理技术对离子通道蛋白进行功能研究。我们一直在开发一种塑料微流控装置,用于平面脂质双层的重构以及电生理记录,以制造用于高通量筛选的“膜蛋白芯片”。在之前的报告[铃木,H.,田端,K.V.,野地,H.,竹内,S.,2006年。聚甲基丙烯酸甲酯微流控芯片中平面脂质双层重构的高重现性方法。《朗缪尔》22(4),1937 - 1942]中,我们介绍了该方法和装置,其中平面脂质双层的重现性达到了90%,并且能同时形成多个双层。在本通讯中,我们表明我们的装置具有优异的电学性质,适用于单分子水平的离子通道分析。还介绍了关于脂质双层形成时的光学可达性和可控性的其他方面。