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扫描离子电导显微镜用于研究生物样本。

Scanning ion conductance microscopy for studying biological samples.

机构信息

Central Unit for Ionbeams and Radionuclides (RUBION), Ruhr-University of Bochum, Bochum, Bochum, Germany.

出版信息

Sensors (Basel). 2012 Nov 6;12(11):14983-5008. doi: 10.3390/s121114983.

Abstract

Scanning ion conductance microscopy (SICM) is a scanning probe technique that utilizes the increase in access resistance that occurs if an electrolyte filled glass micro-pipette is approached towards a poorly conducting surface. Since an increase in resistance can be monitored before the physical contact between scanning probe tip and sample, this technique is particularly useful to investigate the topography of delicate samples such as living cells. SICM has shown its potential in various applications such as high resolution and long-time imaging of living cells or the determination of local changes in cellular volume. Furthermore, SICM has been combined with various techniques such as fluorescence microscopy or patch clamping to reveal localized information about proteins or protein functions. This review details the various advantages and pitfalls of SICM and provides an overview of the recent developments and applications of SICM in biological imaging. Furthermore, we show that in principle, a combination of SICM and ion selective micro-electrodes enables one to monitor the local ion activity surrounding a living cell.

摘要

扫描离子电导显微镜(SICM)是一种扫描探针技术,它利用如果充满电解质的玻璃微管在接近不良导电表面时会发生的接入电阻的增加。由于可以在扫描探针尖端和样品之间发生物理接触之前监测电阻的增加,因此该技术特别适用于研究例如活细胞等脆弱样品的形貌。SICM 在各种应用中显示出了其潜力,例如对活细胞进行高分辨率和长时间成像,或确定细胞体积的局部变化。此外,SICM 已与荧光显微镜或膜片钳等各种技术结合使用,以揭示有关蛋白质或蛋白质功能的局部信息。这篇综述详细介绍了 SICM 的各种优点和缺点,并概述了 SICM 在生物成像中的最新发展和应用。此外,我们表明,原则上,SICM 和离子选择性微电极的组合可以实现对活细胞周围局部离子活性的监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9730/3522950/b72203970250/sensors-12-14983f1.jpg

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