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基于纳米探针支撑的生物纳米孔的空间分辨化学检测。

Spatially Resolved Chemical Detection with a Nanoneedle-Probe-Supported Biological Nanopore.

机构信息

Department of Biotechnology and Life Science , Tokyo University of Agriculture and Technology , 2-24-16 Naka-cho , Koganei-shi , Tokyo 184-8588 , Japan.

出版信息

ACS Nano. 2019 Feb 26;13(2):2606-2614. doi: 10.1021/acsnano.8b09667. Epub 2019 Feb 12.

Abstract

In this article, we describe the quantitative characterization of a gold nanoneedle ion channel probe and demonstrate the utility of this probe for spatially resolved detection of a small molecule using ion channel activity. Our report builds on recent reports of Ide and co-workers, who reported the use of an etched gold wire modified with a poly(ethylene) glycol monolayer as a support for a lipid bilayer and subsequent single ion channel recordings. Although this nanoneedle electrode approach was reported previously, in our report, we investigate the effects of several operational parameters on the performance of the ion channel measurement and electrochemical phenomenon that occur in the nanoconfined space between the supported bilayer and the gold electrode. More specifically, we address the effects of length of the supporting monolayer and the composition of the electrolyte baths on channel current measurements and provide a quantitative description of what carries current at the working electrode (double-layer charging). In addition, we demonstrate the ability to control the direction of protein insertion (tip side vs bath side) with freely diffusing protein, which has not been previously reported, with the former method (tip side) enabling single-molecule detection of β-cyclodextrin (βCD) using a reconstituted α-hemolysin channel. Finally, anticipating future use of a nanoneedle-based biological nanopore probe in a scanned-probe microscopy, we demonstrate the ability to quantify and spatially resolve the concentration of βCD molecules in a microfluidic channel. We believe, in the long term, the described nanoneedle-based biological nanopore probe can be employed in, for example, scanning ion conductance microscopy using ion channels.

摘要

在本文中,我们描述了金纳米针离子通道探针的定量特征,并展示了该探针在使用离子通道活性进行小分子的空间分辨检测中的应用。我们的报告建立在 Ide 及其同事最近的报告基础上,他们报告了使用经过蚀刻的金丝修饰的聚乙二醇单层作为支持脂质双层的支撑物,并随后进行了单个离子通道记录。尽管之前已经报道了这种纳米针电极方法,但在我们的报告中,我们研究了几个操作参数对离子通道测量性能和在支撑双层和金电极之间的纳米受限空间中发生的电化学现象的影响。更具体地说,我们解决了支撑单层的长度和电解质浴的组成对通道电流测量的影响,并对在工作电极(双层充电)中携带电流的物质进行了定量描述。此外,我们展示了使用自由扩散的蛋白质控制蛋白质插入方向(尖端侧与浴侧)的能力,这在以前的方法中没有报道过,前者(尖端侧)能够使用重组的α-溶血素通道对β-环糊精(βCD)进行单分子检测。最后,预计未来将在扫描探针显微镜中使用基于纳米针的生物纳米孔探针,我们展示了在微流道中定量和空间分辨βCD 分子浓度的能力。我们相信,从长远来看,所描述的基于纳米针的生物纳米孔探针可以用于例如使用离子通道的扫描离子电导显微镜。

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