Urakubo Kazuhiro, Iwamoto Masayuki, Oiki Shigetoshi
Department of Molecular Physiology and Biophysics, University of Fukui, Fukui, Japan.
Department of Molecular Physiology and Biophysics, University of Fukui, Fukui, Japan.
Methods Enzymol. 2019;621:347-363. doi: 10.1016/bs.mie.2019.02.012. Epub 2019 Mar 21.
Various methods have been developed for the formation of planar lipid bilayers, and recent techniques using water-in-oil droplets, such as droplet interface bilayer (DIB) and contact bubble bilayer (CBB) methods, allow the ready formation of bilayers with arbitrary lipid compositions. Here, we developed a simple and portable DIB system using drop-in-wells, shaping two merging wells for settling electrolyte droplets. An aliquot of the electrolyte solution (1μL) is dropped into an organic solvent, and the droplet sinks to the drop-in-well at the bottom, where two monolayer-lined droplets come in contact to form the bilayer. Pre-installed electrodes allow electrophysiological measurements. The detailed drop-in-well method is presented, and some variations of the method, such as the use of microelectrodes and a sheet with a small hole for low-noise recordings, are extended. Examples of single channel current recordings of the KcsA potassium channel are demonstrated.
已经开发出多种用于形成平面脂质双层的方法,最近利用油包水液滴的技术,如液滴界面双层(DIB)和接触气泡双层(CBB)方法,能够轻松形成具有任意脂质组成的双层。在此,我们开发了一种使用孔中液滴的简单便携式DIB系统,通过塑造两个合并孔来放置电解质液滴。将一份电解质溶液(1μL)滴入有机溶剂中,液滴会沉到底部的孔中液滴处,在那里两个由单层排列的液滴接触形成双层。预先安装的电极可进行电生理测量。本文介绍了详细的孔中液滴方法,并扩展了该方法的一些变体,如使用微电极和带有小孔的薄片进行低噪声记录。展示了KcsA钾通道单通道电流记录的示例。