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通过结合与温度相关的迁移率缩放,实现 CE-UV 和 CE-UV-ESI-MS 中的轻松峰跟踪。

Easy peak tracking in CE-UV and CE-UV-ESI-MS by incorporating temperature-correlated mobility scaling.

机构信息

Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.

出版信息

Electrophoresis. 2013 Jun;34(12):1787-95. doi: 10.1002/elps.201200695. Epub 2013 May 23.

Abstract

A simple data reconstruction technique in CE-UV-ESI-MS (where UV stands for ultraviolet) is presented to overcome the drift in mobilities caused by various factors compromising the reproducibility of such data, for example Joule heating effects and the variation in thermostatic control along the capillary, drift in EOF and the suction effect caused by the nebulizing gas in coaxial CE-MS interfaces. We present here a method to transform the traditional time-based electropherogram into the corresponding temperature-correlated mobility scale allowing tracking of analytes independent from capillary dimensions, electric field strengths, temperature control, and distance between the detectors. The main principle of this alignment is based on including the current in the mobility calculations and relating this to the initial electrical resistance of the buffer-filled capillary. The temperature-correlated mobility calculation eliminates the peak shifts due to the viscosity changes, improves the precision of peak identification using the observed temperature-correlated mobilities, and allows a direct comparison of signals from different detection combinations. The method allows peaks from normal CE-UV separations to be correlated with the corresponding peak obtained by MS detection in CE-MS even for differences in capillary dimensions and thermostatic control.

摘要

本文提出了一种在 CE-UV-ESI-MS(其中 UV 代表紫外线)中进行简单数据重构的技术,以克服各种因素导致的迁移率漂移,这些因素会影响此类数据的重现性,例如焦耳加热效应以及沿毛细管的恒温控制变化、EOF 漂移以及同轴 CE-MS 接口中的雾化气体的抽吸效应。我们在这里提出了一种将传统的基于时间的电泳谱图转换为相应的温度相关迁移率尺度的方法,该方法允许独立于毛细管尺寸、电场强度、温度控制和检测器之间的距离跟踪分析物。这种对齐的主要原理基于将电流包含在迁移率计算中,并将其与缓冲液填充毛细管的初始电阻相关联。温度相关的迁移率计算消除了由于粘度变化引起的峰位移,提高了使用观察到的温度相关迁移率识别峰的精度,并允许直接比较来自不同检测组合的信号。该方法允许将正常 CE-UV 分离的峰与 CE-MS 中通过 MS 检测获得的相应峰相关联,即使在毛细管尺寸和恒温控制方面存在差异也是如此。

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