Yoshida Hiroo, Mizukoshi Toshimi, Hirayama Kazuo, Miyano Hiroshi
Institute of Life Sciences, Ajinomoto Co., Inc. 1-1 Suzuki-cho Kawasaki-ku, Kawasaki, Kanagawa, Japan.
J Chromatogr A. 2006 Jun 30;1119(1-2):315-21. doi: 10.1016/j.chroma.2006.03.098. Epub 2006 Apr 18.
A novel desalting method, using a column switching technique and a volatile ion-pairing reagent, pentadecafluorooctanoic acid, was developed. This system allows hydrophilic and cationic compounds in a nonvolatile buffer to be directly introduced into a mass spectrometer for structural elucidation. The desalting procedure consists of four steps: (1) the fractionation of a target compound from a separation column, (2) the removal of salts with pentadecafluorooctanoic acid on the trap column, (3) the desorption of the compound from the trap column, and (4) the re-equilibration of the trap column with a pentadecafluorooctanoic acid solution. In this procedure, we investigated the methods for optimizing the desalting and re-equilibration steps. Various amino acids, including branched chain amino acids, aromatic amino acids, basic amino acids and methionine, after separation with phosphate buffer on a cation-exchange column, were successively desalted by this method, and were observed as protonated ions by mass spectrometry. This desalting system could be useful for the structural elucidation of unknown hydrophilic compounds eluted by conventional high-performance liquid chromatography methods, such as ion-exchange chromatography, with mobile phases containing nonvolatile salts. As an example, we present the structural elucidation of unknown metabolites in bovine serum.
开发了一种新型脱盐方法,该方法采用柱切换技术和挥发性离子对试剂十五氟辛酸。该系统可将非挥发性缓冲液中的亲水性和阳离子化合物直接引入质谱仪以进行结构解析。脱盐过程包括四个步骤:(1) 从分离柱中分离目标化合物;(2) 在捕集柱上用十五氟辛酸去除盐分;(3) 使化合物从捕集柱上解吸;(4) 用十五氟辛酸溶液使捕集柱重新平衡。在此过程中,我们研究了优化脱盐和重新平衡步骤的方法。各种氨基酸,包括支链氨基酸、芳香族氨基酸、碱性氨基酸和蛋氨酸,在阳离子交换柱上用磷酸盐缓冲液分离后,通过该方法依次脱盐,并通过质谱观察到质子化离子。该脱盐系统可用于通过传统高效液相色谱方法(如离子交换色谱)洗脱的未知亲水性化合物的结构解析,这些方法的流动相中含有非挥发性盐。作为一个例子,我们展示了牛血清中未知代谢物的结构解析。