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多通道同时测量α-溶血素纳米孔阵列中单分子的转位。

Multichannel simultaneous measurements of single-molecule translocation in alpha-hemolysin nanopore array.

机构信息

Institute of Industrial Science, The University of Tokyo, Japan.

出版信息

Anal Chem. 2009 Dec 15;81(24):9866-70. doi: 10.1021/ac901732z.

Abstract

We present a microarray system that enables simultaneous monitoring of multiple ionic currents through transmembrane alpha-hemolysin nanopores arrayed at bilayer lipid membranes. We applied the self-assembling ability of lipid molecules interfaced between an aqueous solution and organic solvent to induce bilayer membrane formation at a microfluidic device; the device consists of a hydrophobic polymer film that serves to suspend the lipid-containing solvent at micrometer-sized apertures as well as to separate the aqueous solution into two chambers. In this study, we confirmed that expeditious and reproducible bilayer formation is realized by control of the composition of the solvent, a mixture of n-decane and 1-hexanol, which permits simultaneous incorporation of the alpha-hemolysin nanopores to the membrane array. Monitoring the eight wells on the array at once, we obtained a maximum of four relevant, synchronous signals of translocating ionic current through the nanopores. The system was also able to detect translocation events of nucleic acid molecules through the pore via the profile of a blocked current, promising its potential for high-throughput applications.

摘要

我们提出了一种微阵列系统,该系统能够通过在双层脂质膜上排列的跨膜α-溶血素纳米孔阵列同时监测多种离子电流。我们应用界面在水相和有机溶剂之间的脂质分子的自组装能力来诱导在微流控装置中的双层膜形成;该装置由疏水性聚合物膜组成,该聚合物膜用于将含有脂质的溶剂悬浮在微米级孔径中,以及将水溶液分离成两个腔室。在这项研究中,我们通过控制溶剂的组成来确认快速且可重复的双层形成,该溶剂为正癸烷和 1-己醇的混合物,其允许α-溶血素纳米孔同时掺入到膜阵列中。同时监测阵列上的八个孔,我们获得了通过纳米孔迁移离子电流的四个最大相关同步信号。该系统还能够通过阻塞电流的分布检测到通过孔的核酸分子的转位事件,有望用于高通量应用。

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