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Increasing the Efficiency of In-Capillary Electrophoretically Mediated Microanalysis Reactions via Rapid Polarity Switching

机译:通过快速极性切换提高毛细管内电泳介导的微分析反应的效率

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摘要

We report herein a new approach to enhance the sensitivity or speed of CE-based methods that involve in-line reactions. Rapid polarity switching (RPS) is used as a novel means for in-line mixing of two reactant solutions via rapid (1–5 s) and sequential switching of the applied potential field. By employing the RPS approach with a model chemical reaction, that between creatinine and alkaline picrate, significant enhancement in sensitivity (or a decrease in analysis time) is realized. Both increased convection and electrophoretic stacking of the ionic reagent appear to contribute to the rise in apparent reaction rate. When coupled with in-line chemistry of the Jaffe method for creatinine, the RPS methodology allows for 3-fold faster determination of creatinine in the concentration range needed for the analysis of clinical blood serum specimens. The new approach also allows the analysis to be performed without the need for the cumbersome and problematic enhanced sensitivity cell.
机译:我们在此报告了一种新方法,可以提高涉及在线反应的基于CE的方法的灵敏度或速度。快速极性切换(RPS)被用作通过快速(1-5 s)顺序切换施加的电势场来在线混合两种反应物溶液的新颖方法。通过将RPS方法与肌酐和碱性苦味酸盐之间的模型化学反应一起使用,可以实现灵敏度的显着提高(或分析时间的减少)。对流增加和离子试剂的电泳堆积似乎都有助于表观反应速率的提高。当与Jaffe方法中肌酐的在线化学方法结合使用时,RPS方法可在测定临床血清标本所需的浓度范围内,将肌酐的测定速度提高3倍。新方法还可以进行分析,而无需繁琐且有问题的增强灵敏度单元。

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