Cai Yi, Adams Daniel, Chen Hao
Center for Intelligent Chemical Instrumentation, Department of Chemistry and Biochemistry, Ohio University, Athens, OH, 45701, USA.
J Am Soc Mass Spectrom. 2014 Feb;25(2):286-92. doi: 10.1007/s13361-013-0763-1. Epub 2013 Nov 20.
This paper presents a novel splitting method for liquid chromatography/mass spectrometry (LC/MS) application, which allows fast MS detection of LC-separated analytes and subsequent online analyte collection. In this approach, a PEEK capillary tube with a micro-orifice drilled on the tube side wall is used to connect with LC column. A small portion of LC eluent emerging from the orifice can be directly ionized by desorption electrospray ionization (DESI) with negligible time delay (6~10 ms) while the remaining analytes exiting the tube outlet can be collected. The DESI-MS analysis of eluted compounds shows narrow peaks and high sensitivity because of the extremely small dead volume of the orifice used for LC eluent splitting (as low as 4 nL) and the freedom to choose favorable DESI spray solvent. In addition, online derivatization using reactive DESI is possible for supercharging proteins and for enhancing their signals without introducing extra dead volume. Unlike UV detector used in traditional preparative LC experiments, this method is applicable to compounds without chromophores (e.g., saccharides) due to the use of MS detector. Furthermore, this splitting method well suits monolithic column-based ultra-fast LC separation at a high elution flow rate of 4 mL/min. Figure ᅟ
本文介绍了一种用于液相色谱/质谱(LC/MS)应用的新型分流方法,该方法可实现对液相色谱分离的分析物进行快速质谱检测并随后在线收集分析物。在这种方法中,使用在管壁上钻有微孔的聚醚醚酮(PEEK)毛细管与液相色谱柱相连。从孔口流出的一小部分液相色谱洗脱液可通过解吸电喷雾电离(DESI)直接电离,时间延迟可忽略不计(6~10毫秒),而从管出口流出的其余分析物则可被收集。由于用于液相色谱洗脱液分流的孔口死体积极小(低至4纳升)且可自由选择合适的DESI喷雾溶剂,对洗脱化合物的DESI-MS分析显示出窄峰和高灵敏度。此外,使用反应性DESI进行在线衍生化对于增强蛋白质电荷和增强其信号是可行的,且不会引入额外的死体积。与传统制备型液相色谱实验中使用的紫外检测器不同,由于使用了质谱检测器,该方法适用于没有发色团的化合物(如糖类)。此外,这种分流方法非常适合基于整体柱的超快速液相色谱分离,洗脱流速高达4毫升/分钟。图ᅟ