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Simultaneous Separation of Negatively and Positively Charged Species in Dynamic Field Gradient Focusing Using a Dual Polarity Electric Field

机译:使用双极性电场在动态场梯度聚焦中同时分离负电荷和正电荷的物种

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Dynamic field gradient focusing (DFGF) utilizes an electric field gradient established by a computer-controlled electrode array to separate and concentrate charged analytes at unique axial positions. Traditionally, DFGF has been restricted to the analysis of negatively charged species due to limitations in the software of our voltage controller. This paper introduces a new voltage controller capable of operating under normal polarity (positive potentials applied to the electrode array) and reversed polarity (negative potentials applied to the electrode array) for the separation of negatively and positively charged analytes, respectively. The experiments conducted under normal polarity and reversed polarity illustrate the utility of the new controller to perform reproducible DFGF separations (elution times showing less than 1percent run-to-run variation) over a wide pH range (3.08 to 8.5) regardless of the protein charge. A dual polarity experiment is then shown in which the separation channel has been divided into normal polarity and reversed polarity regions. This simultaneous separation of negatively charged R-phycoerythrin (R-PE) and positively charged cytochrome c (CYTC) within the same DFGF apparatus is shown.
机译:动态场梯度聚焦(DFGF)利用计算机控制的电极阵列建立的电场梯度来分离和浓缩带电分析物在唯一的轴向位置。传统上,由于我们电压控制器软件的限制,DFGF仅限于分析带负电的物质。本文介绍了一种新的电压控制器,该电压控制器能够分别在正极性(施加到电极阵列的正电位)和反极性(施加到电极阵列的负电位)下操作,以分离带负电荷和带正电荷的分析物。在正常极性和相反极性下进行的实验表明,这种新型控制器可在较宽的pH范围(3.08至8.5)范围内执行可再现的DFGF分离(洗脱时间表明每次运行之间的差异小于1%),而不论蛋白质电荷如何。然后显示了双极性实验,其中将分离通道分为正常极性和反极性区域。显示了在同一DFGF设备中同时分离带负电的R-藻红蛋白(R-PE)和带正电的细胞色素c(CYTC)的情况。

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