Kohl Felix J, Montealegre Cristina, Neusüß Christian
Department of Chemistry, Aalen University, Aalen, Germany.
Electrophoresis. 2016 Apr;37(7-8):954-8. doi: 10.1002/elps.201500579. Epub 2016 Feb 29.
CE is becoming more and more important in many fields of bioanalytical chemistry. Besides optical detection, hyphenation to ESI-MS detection is increasingly applied for sensitive identification purposes. Unfortunately, many CE techniques and methods established in research and industry are not compatible to ESI-MS since essential components of the background electrolyte interfere in ES ionization. In order to identify unknown peaks in established CE methods, here, a heart-cut 2D-CE separation system is introduced using a fully isolated mechanical valve with an internal loop of only 20 nL. In this system, the sample is separated using potentially any non-ESI compatible method in the first separation dimension. Subsequently, the portion of interest is cut by the internal sample loop of the valve and reintroduced to the second dimension where the interfering compounds are removed, followed by ESI-MS detection. When comparing the separation efficiency of the system with the valve to a system using a continuous capillary only a slight increase in peak width is observed. Ultraviolet/visible detection is integrated in the first dimension for switching time determination, enabling reproducible cutting of peaks of interest. The feasibility of the system is successfully demonstrated by a 2D analysis of a BSA tryptic digest sample using a nonvolatile (phosphate based) background electrolyte in the first dimension.
毛细管电泳(CE)在生物分析化学的许多领域正变得越来越重要。除了光学检测外,与电喷雾电离质谱(ESI-MS)检测联用越来越多地用于灵敏的鉴定目的。不幸的是,研究和工业中建立的许多CE技术和方法与ESI-MS不兼容,因为背景电解质的基本成分会干扰电喷雾电离。为了在已建立的CE方法中鉴定未知峰,本文介绍了一种中心切割二维CE分离系统,该系统使用了一个内部环路仅为20 nL的完全隔离的机械阀。在该系统中,样品在第一分离维度上使用任何可能与ESI不兼容的方法进行分离。随后,感兴趣的部分通过阀的内部样品环进行切割,并重新引入到第二维度,在那里去除干扰化合物,然后进行ESI-MS检测。当将带阀系统的分离效率与仅使用连续毛细管的系统进行比较时,观察到峰宽仅略有增加。在第一维度中集成了紫外/可见检测以确定切换时间,从而能够对感兴趣的峰进行可重复切割。通过在第一维度中使用非挥发性(基于磷酸盐的)背景电解质对牛血清白蛋白胰蛋白酶消化样品进行二维分析,成功证明了该系统的可行性。