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Method for the Sequential Online Analysis of Enzyme Reactions Based on Capillary Electrophoresis

机译:基于毛细管电泳的酶反应在线顺序分析方法

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摘要

We have developed an easy-to-operate and effective method for performing the sequential online analysis of enzyme reactions based on capillary electrophoresis (CE). The system was constructed by passing two capillaries through a sample vial at a distance of 5 (mu)m between the capillary ends. Direct online sample injection and sequential CE analysis were achieved by periodically switching the high-voltage power supply off and on, without any physical disturbance of the capillary inlet. The sample was injected via concentration diffusion with in-column derivatization of the amino acids occurring at the interface of the capillaries. High reproducibility of the sequential injections was demonstrated with relative standard deviation values (n velence 20) of 1.01percent, 1.25percent, and 0.80percent for peak height, peak area, and migration time, respectively. Sequential online CE enzyme assay of a glutamate pyruvate transaminase catalyzed enzyme reaction was carried out by simultaneously monitoring the substrate consumption and the product formation every 30 s from the beginning to the end of the reaction. The Michaelis constants for the reaction were obtained and were found to be in good agreement with the results of traditional off-line enzyme assays. Our method has great potential for usage in sequential online CE analysis of chemical reactions with in-column chemical derivatization of the analytes for ultraviolet or laser-induced fluorescence detection.
机译:我们已经开发出一种易于操作且有效的方法,用于基于毛细管电泳(CE)进行酶反应的顺序在线分析。该系统是通过使两个毛细管在毛细管末端之间以5μm的距离通过样品瓶的方式构造的。通过定期打开和关闭高压电源,而对毛细管入口没有任何物理干扰,可以实现直接在线样品注射和顺序CE分析。通过浓度扩散对样品进行注射,其中发生在毛细管界面的氨基酸进行了柱内衍生。峰高,峰面积和迁移时间的相对标准偏差值(nvelence 20)分别为1.01%,1.25%和0.80%,证明了顺序进样的高重现性。谷氨酸丙酮酸转氨酶催化的酶反应的在线在线CE酶分析是通过从反应开始到结束每30 s同时监测底物消耗和产物形成来进行的。获得了该反应的米氏常数,并且发现其与传统离线酶测定的结果非常一致。我们的方法具有用于化学反应的连续在线CE分析以及柱上化学衍生化分析物以进行紫外线或激光诱导的荧光检测的巨大潜力。

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