Kohler M, Leary J A
College of Chemistry, University of California, Berkeley 94720-1460, USA.
Anal Chem. 1995 Oct 1;67(19):3501-8. doi: 10.1021/ac00115a019.
A new technique for on-line postcolumn addition (PCA) formation and tandem electrospray mass spectrometry of carbohydrate-metal complexes is presented. A metal chloride solution is added to a carbohydrate sample directly within the ion source of the mass spectrometer. Using a triaxial electrospray probe, this technique can be applied to form carbohydrate-metal complexes on-line, without the need of previously mixing the carbohydrate and metal chloride. Two basic tasks may be accomplished: structural analysis and sensitivity enhancement. The performance of this approach is demonstrated through PCA of LiCl, NaCl, KCl, RbCl, CsCl, and CoCl2, introduced via the triaxial probe after chromatographic separation of two four-component carbohydrate mixtures. Each metal-carbohydrate complex is subsequently analyzed by on-line MS and MS/MS. This technique is used to enhance sensitivity and also, in the case of cobalt coordination, to assist in carbohydrate structural elucidation. On-line LC/MS with PCA of LiCl was achieved with as little as 1.7 pmol of oligosaccharide (average consumed amount, 1.7 pmol with 1 microL of a 10 pmol/microL carbohydrate test mixture injection).
本文介绍了一种用于碳水化合物 - 金属配合物的在线柱后添加(PCA)形成及串联电喷雾质谱分析的新技术。将金属氯化物溶液直接添加到质谱仪离子源内的碳水化合物样品中。使用三轴电喷雾探头,该技术可用于在线形成碳水化合物 - 金属配合物,而无需预先混合碳水化合物和金属氯化物。该技术可完成两项基本任务:结构分析和灵敏度增强。通过对两种四组分碳水化合物混合物进行色谱分离后,经由三轴探头引入LiCl、NaCl、KCl、RbCl、CsCl和CoCl2进行PCA,证明了该方法的性能。随后,对每种金属 - 碳水化合物配合物进行在线质谱(MS)和串联质谱(MS/MS)分析。该技术用于提高灵敏度,并且在钴配位的情况下,还可协助阐明碳水化合物的结构。使用LiCl进行PCA的在线液相色谱 - 质谱联用分析,所需的寡糖量低至1.7皮摩尔(平均消耗量,注射1微升10皮摩尔/微升的碳水化合物测试混合物时为1.7皮摩尔)。