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基于光电流体荧光显微镜的分子扩散测量。

Measurement of molecular diffusion based on optoelectrofluidic fluorescence microscopy.

机构信息

Department of Bio and Brain Engineering, College of Life Science and Bioengineering, KAIST, 335 Gwanhangno, Yuseong-gu, Daejeon 305-701, Republic of Korea.

出版信息

Anal Chem. 2009 Nov 1;81(21):9163-7. doi: 10.1021/ac9021709.

Abstract

This technical note reports a method for measuring the diffusion coefficient of molecules based on an optoelectrofluidic platform. Optoelectrofluidic fluorescence microscopy, which is constructed with an optoelectrofluidic device and a conventional fluorescence microscope, is a useful tool for controlling and detecting local molecular concentration in a fluid with a single light source. When we project a light for fluorescence excitation and apply an ac signal of a few hundred Hertz frequency around 100 Hz to the optoelectrofluidic device, a sudden decay of molecular concentration occurs within the illuminated area due to several mechanisms, including optically induced ac electroosmosis, electrostatic interaction forces among the polarized molecules, and interactions among the molecules and between the molecules and the electric double layer. After the applied voltage was turned off, the dispersed molecules diffuse into the molecular depletion area and the fluorescence signal is recovered. On the basis of these phenomena, we successfully measured the diffusion coefficient of various dextran molecules. A statistical analysis to determine the significance of our experimental values compared to the previously reported values measured using fluorescence recovery after photobleaching technology was also performed. This new technique demonstrates the first analytical measurement of diffusion based on the optoelectrofluidic platform and can be a useful tool for measuring the mobility of molecules in a simple and easy way.

摘要

本技术说明报告了一种基于光电流体平台测量分子扩散系数的方法。光电流体荧光显微镜由光电流体器件和传统荧光显微镜构建而成,是一种有用的工具,可用于在单个光源下控制和检测流体中的局部分子浓度。当我们用荧光激发光照射并将频率为几百赫兹的交流信号施加到光电流体器件上时,由于几种机制,包括光诱导的交流电渗、极化分子之间的静电相互作用力以及分子之间和分子与电双层之间的相互作用,在照明区域内会发生分子浓度的突然衰减。施加的电压关闭后,分散的分子扩散到分子耗尽区域,荧光信号得到恢复。基于这些现象,我们成功地测量了各种葡聚糖分子的扩散系数。还进行了统计分析,以确定我们的实验值与使用光漂白后荧光恢复技术测量的先前报道值之间的显著性。这项新技术展示了基于光电流体平台的扩散的首次分析测量,并且可以成为一种简单易用的测量分子迁移率的有用工具。

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