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Quantitative Predictions to Conditions of Zwitterionic Stacking by Transient Moving Chemical Reaction Boundary Created with Weak Electrolyte Buffers in Capillary Electrophoresis

机译:毛细管电泳中弱电解质缓冲液产生的瞬态移动化学反应边界对两性离子堆积条件的定量预测

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This paper develops a novel procedure of quantitative predictions for the on-column stacking conditions of a zwitterionic analyte by a moving chemical reaction boundary (MCRB) in capillary electrophoresis (CE). The procedure concerns the choice of the weak acidic running and alkaline sample buffers and the velocity design of MCRB created with the two buffers. Based on the theory of MCRB, the theoretical computations are performed. From the computations, the following two predictions are refined for the stacking conditions of zwitterion. (1) The zwitterion velocity in the acidic buffer should be greater than that of MCRB moving toward the cathode, or the zwitterion cannot be well stacked by the MCRB. (2) The gap between pH values of the acidic and alkaline sample buffers ought to comprise the isoelectric point (pI of zwitterion to be stacked; namely. there exists the relation of pH (acidic buffer) < pI < pH (sample). The predictions are quantitatively proved by the openments of zwitterionic stacking with two kinds of MCRBs. In addition, the experiments also show the tightly stacked peak of zwitterion existing in the process of MCRB, but not after the MCRB. The theoretical and experimental results hold obvious significances to other zwitterion (such as peptide and protein) on-column stacking in CE.
机译:本文通过毛细管电泳(CE)中的移动化学反应边界(MCRB),开发了一种两性离子分析物的柱上堆积条件定量预测的新方法。该程序涉及弱酸性运行和碱性样品缓冲液的选择以及使用两个缓冲液创建的MCRB的速度设计。基于MCRB理论,进行了理论计算。从计算中,针对两性离子的堆叠条件完善了以下两个预测。 (1)酸性缓冲液中的两性离子速度应大于朝阴极移动的MCRB的速度,否则两性离子不能被MCRB很好地堆叠。 (2)酸性和碱性样品缓冲液的pH值之间的差距应包含等电点(要堆叠的两性离子的pI;即,存在pH(酸性缓冲液)I H(样品)的关系。两种MCRB的两性离子堆叠的开放性定量地预测了预测结果,此外,实验还表明在MCRB的过程中存在两性离子的紧密堆积峰,但MCRB之后没有,理论和实验结果具有明显的意义。到CE中其他两性离子(例如肽和蛋白质)的柱上堆积。

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