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二维微几何结构中IEF的建模与仿真。

Modeling and simulation of IEF in 2-D microgeometries.

作者信息

Shim Jaesool, Dutta Prashanta, Ivory Cornelius F

机构信息

School of Mechanical and Materials Engineering, Washington State University, Pullman, WA 99164-2920, USA.

出版信息

Electrophoresis. 2007 Feb;28(4):572-86. doi: 10.1002/elps.200600402.

Abstract

A 2-D finite-volume model is developed to simulate nonlinear IEF in complex microgeometries. This mathematical model is formulated based on the mass conservation and ionic dissociation relations of amphoteric macromolecules, charge conservation, and the electroneutrality condition. Based on the 2-D model, three different separation cases are studied: an IPG in a planar channel, an ampholyte-based pH gradient in a planar channel, and an ampholyte-based pH gradient in a contraction-expansion channel. In the IPG case, cacodylic acid (pK(1) = 6.21) and Tris (pK(1) = 8.3) are used as the acid and base, respectively, to validate the 2-D IEF model. In the ampholyte-based pH gradient cases, IEF is performed in the pH range, 6.21-8.3 using 10 ampholytes in the planar channel and 20 ampholytes in the contraction-expansion channel. The numerical results reveal different focusing efficiencies and resolution in the narrow and wide sections of the contraction-expansion channel. To explain this, the expressions for separation resolution and peak concentrations of separands in the contraction-expansion channel are presented in terms of the channel shape factor. In a 2-D planar channel, a focused band remains straight all the time. However, in a contraction-expansion channel, initially straight bands take on a crescent profile as they pass through the trapezoidal sections joining the contraction and expansion sections.

摘要

开发了一种二维有限体积模型来模拟复杂微几何结构中的非线性等电聚焦。该数学模型基于两性大分子的质量守恒和离子解离关系、电荷守恒以及电中性条件建立。基于二维模型,研究了三种不同的分离情况:平面通道中的固定化pH梯度(IPG)、平面通道中基于两性电解质的pH梯度以及收缩-扩张通道中基于两性电解质的pH梯度。在IPG情况下,分别使用二甲胂酸(pK(1)=6.21)和Tris(pK(1)=8.3)作为酸和碱来验证二维等电聚焦模型。在基于两性电解质的pH梯度情况下,在6.21 - 8.3的pH范围内进行等电聚焦,在平面通道中使用10种两性电解质,在收缩-扩张通道中使用20种两性电解质。数值结果揭示了收缩-扩张通道狭窄和宽阔部分不同的聚焦效率和分辨率。为了解释这一点,根据通道形状因子给出了收缩-扩张通道中分离分辨率和被分离物峰浓度的表达式。在二维平面通道中,聚焦带始终保持笔直。然而,在收缩-扩张通道中,最初笔直的带在通过连接收缩和扩张部分的梯形部分时会呈现月牙形轮廓。

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