Center for Intelligent Chemical Instrumentation, Department of Chemistry and Biochemistry, Clippinger Laboratories, Ohio University, Athens, Ohio 45701, USA.
Anal Chem. 2009 Dec 1;81(23):9716-22. doi: 10.1021/ac901975j.
The combination of electrochemistry (EC) and mass spectrometry (MS) is a powerful analytical tool to study redox reactions. This work reports the online coupling of a thin-layer electrochemical flow cell with liquid sample desorption electrospray ionization mass spectrometry (DESI-MS) and its applications in investigating various electrochemical reactions of biological molecules such as oxidative formation and reductive cleavage of disulfide bonds and online derivatization of peptides/proteins. As a result of the direct sampling nature of DESI, several useful features of such a coupling have been found, including simple instrumentation, fast response time (e.g., 3.6 s in the case of dopamine oxidation), freedom to choose a favorable ionization mode of DESI or traditional electrolysis solvent systems, and the absence of background signal possibly resulting from ionization when the cell is off (e.g., in the case of dopamine oxidation). More importantly, with the use of this new coupling apparatus, three disulfide bonds of insulin were fully cleaved by electrolytic reduction and both the A and B chains of the protein were successfully detected online by DESI-MS. In addition, online tagging of free cysteine residues of peptides/proteins employing electrogenerated dopamine o-quinone can be performed. These revealed characteristics of the coupling along with examined electrochemical reactions suggest that EC/DESI-MS has good potential in bioanalysis.
电化学(EC)和质谱(MS)的结合是研究氧化还原反应的强大分析工具。本工作报道了薄层电化学流动池与液相样品解吸电喷雾电离质谱(DESI-MS)的在线耦合及其在研究生物分子的各种电化学反应中的应用,如二硫键的氧化形成和还原裂解以及肽/蛋白质的在线衍生化。由于 DESI 的直接采样特性,发现了这种耦合的几个有用的特点,包括简单的仪器、快速的响应时间(例如,多巴胺氧化的情况下为 3.6 s)、可以自由选择有利的 DESI 或传统电解溶剂系统的电离模式,以及不存在由于细胞关闭时可能导致的背景信号(例如,在多巴胺氧化的情况下)。更重要的是,使用这种新的耦合装置,胰岛素的三个二硫键完全通过电解还原裂解,并且通过 DESI-MS 在线成功地检测到蛋白质的 A 链和 B 链。此外,可以对肽/蛋白质的游离半胱氨酸残基进行电生成多巴胺邻醌的在线标记。这些特征以及所检查的电化学反应表明,EC/DESI-MS 在生物分析中有很好的应用潜力。