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动态场梯度聚焦中电压降解的表征

Characterization of voltage degradation in dynamic field gradient focusing.

作者信息

Burke Jeffrey M, Ivory Cornelius F

机构信息

School of Chemical Engineering and Bioengineering, Washington State University, Pullman, WA, USA.

出版信息

Electrophoresis. 2008 Mar;29(5):1013-25. doi: 10.1002/elps.200700447.

Abstract

Dynamic field gradient focusing (DFGF) is an equilibrium gradient method that utilizes an electric field gradient to simultaneously separate and concentrate charged analytes based on their individual electrophoretic mobilities. This work describes the use of a 2-D nonlinear, numerical simulation to examine the impact of voltage loss from the electrodes to the separation channel, termed voltage degradation, and distortions in the electric field on the performance of DFGF. One of the design parameters that has a large impact on the degree of voltage degradation is the placement of the electrodes in relation to the separation channel. The simulation shows that a distance of about 3 mm from the electrodes to the separation channel gives the electric field profile with least amount of voltage degradation. The simulation was also used to describe the elution of focused protein peaks. The simulation shows that elution under constant electric field gradient gives better performance than elution through shallowing of the electric field. Qualitative agreement between the numerical simulation and experimental results is shown. The simulation also illustrates that the presence of a defocusing region at the cathodic end of the separation channel causes peak dispersion during elution. The numerical model is then used to design a system that does not suffer from a defocusing region. Peaks eluted under this design experienced no band broadening in our simulations. Preliminary experimental results using the redesigned chamber are shown.

摘要

动态场梯度聚焦(DFGF)是一种平衡梯度方法,它利用电场梯度根据带电分析物各自的电泳迁移率同时对其进行分离和浓缩。这项工作描述了使用二维非线性数值模拟来研究从电极到分离通道的电压损失(称为电压降解)以及电场畸变对DFGF性能的影响。对电压降解程度有很大影响的一个设计参数是电极相对于分离通道的位置。模拟表明,从电极到分离通道约3毫米的距离可使电场分布的电压降解量最少。该模拟还用于描述聚焦蛋白质峰的洗脱。模拟表明,在恒定电场梯度下洗脱比通过电场变浅洗脱具有更好的性能。显示了数值模拟与实验结果之间的定性一致性。模拟还表明,分离通道阴极端存在散焦区域会导致洗脱过程中峰的分散。然后使用数值模型设计一个不存在散焦区域的系统。在我们的模拟中,在此设计下洗脱的峰没有出现谱带展宽。展示了使用重新设计的腔室的初步实验结果。

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