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分离长度和电压对塑料微流控装置中等电聚焦的影响。

Effects of separation length and voltage on isoelectric focusing in a plastic microfluidic device.

作者信息

Das Champak, Fan Z Hugh

机构信息

Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL 32611, USA.

出版信息

Electrophoresis. 2006 Sep;27(18):3619-26. doi: 10.1002/elps.200600013.

Abstract

This paper describes the investigation on the effects of separation length and voltage on IEF in a plastic microfluidic device. A LIF, whole-channel imaging detection (WCID) system was developed to monitor proteins while they were moving under an electric field. IEF was carried out in a separation medium consisting of carrier ampholytes and a mixture of linear polymers (hydroxyethylcellulose and hydroxypropylcellulose). We found that the IEF separation resolution is essentially independent of separation length when the same voltage is applied, which agrees with the theory. This result supports the notion that IEF in a microfabricated device leads to more rapid analysis without sacrificing the resolving power. A higher separation voltage also brought about more rapid analysis and superior separation resolution. IEF of two proteins (green fluorescence protein and R-phycoerythrin) was achieved in 1.5 min when 500 V was applied across a 1.9-cm channel. We found that a linear relationship exists between the focusing time and the inverse of the electrical field strength. In addition, we confirmed the phenomenon in which the pH gradient was compressed to the middle of a channel, and we found that the relative amount of the gradient compression decreased with the channel length.

摘要

本文描述了对塑料微流控装置中分离长度和电压对等电聚焦(IEF)影响的研究。开发了一种激光诱导荧光(LIF)全通道成像检测(WCID)系统,用于在蛋白质在电场作用下移动时对其进行监测。IEF在由载体两性电解质和线性聚合物(羟乙基纤维素和羟丙基纤维素)混合物组成的分离介质中进行。我们发现,在施加相同电压时,IEF分离分辨率基本上与分离长度无关,这与理论相符。这一结果支持了这样一种观点,即在微制造装置中进行IEF可在不牺牲分辨率的情况下实现更快速的分析。更高的分离电压也带来了更快速的分析和更高的分离分辨率。当在1.9厘米长的通道上施加500伏电压时,两种蛋白质(绿色荧光蛋白和R-藻红蛋白)的IEF在1.5分钟内完成。我们发现聚焦时间与电场强度的倒数之间存在线性关系。此外,我们证实了pH梯度被压缩到通道中间的现象,并且发现梯度压缩的相对量随通道长度而降低。

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