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Enhanced pH-Mediated Stacking of Anions for Capillary Electrophoresis Incorporating a Dynamic pH Junction

机译:增强的pH介导的阴离子堆叠用于结合动态pH结的毛细管电泳

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摘要

A technique has been developed to enhance analyte focusing for capillary electrophoresis for the analysis of physiological samples. High-ionic strength samples are titrated to low-ionic strength on-line using pH-mediated sample stacking in conjunction with a dynamic pH junction. This method concentrates analytes by reducing their electrophoretic mobility during field-amplification. Parameters responsible for enhanced focusing were investigated, and an enhanced pH-mediated stacking method was optimized for anionic nucleosides. The process results in ultra-narrow peak widths, for example, 0.28 s for thymidine with a 10-minute analysis time. Peak width and resolution with the enhanced stacking method were also compared to normal base stacking and electrokinetic injection. With this technique, mass-loading capacity can be increased without degradation in peak shape and resolution is dramatically improved.
机译:已经开发出一种技术来增强用于毛细管电泳的分析物聚焦,以分析生理样品。使用pH介导的样品堆叠和动态pH结点在线将高离子强度样品滴定至低离子强度。该方法通过降低场放大过程中的电泳迁移率来浓缩分析物。研究了负责增强聚焦的参数,并针对阴离子核苷优化了增强pH介导的堆积方法。该过程会产生超窄峰宽,例如,在10分钟的分析时间内,胸苷的峰宽为0.28 s。使用增强型叠加方法的峰宽和分离度也与常规的基本叠加和电动进样进行了比较。使用这种技术,可以增加质量负载能力,而不会降低峰形,并且可以显着提高分离度。

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