Shamsi Shahab A, Miller Blair E
Department of Chemistry, Center of Biotechnology and Drug Design, Georgia State University, Atlanta, GA 30303, USA.
Electrophoresis. 2004 Dec;25(23-24):3927-61. doi: 10.1002/elps.200406131.
We describe here the state-of-the-art development of on-line capillary electrophoresis-mass spectrometry (CE-MS) over the last two years. Technological developments included are novel designs of new interfaces and ionization sources, new capillary coatings, buffers, and micelles as well as application of various modes of CE-MS published in the recent literature. The areas of CE-MS application in analysis of small achiral and chiral solutes are covered in sections that highlight the recent advances and possibilities of each mode of CE-MS. Application areas reviewed in this paper include achiral and chiral pharmaceuticals, agrochemicals, carbohydrates, and small peptides. The separation of enantiomers using micellar electrokinetic chromatography (MEKC)-MS with molecular micelles and capillary electrochromatography (CEC)-MS using pack tapered columns appears to provide good tolerance to electrospray stability for routine on-line CE-MS. These two modes seem to be very suitable for sensitive detection of chiral pharmaceuticals in biological samples, but their use will probably increase in the near future. Overall, it seems that one mode of CE-MS, in particular capillary zone electrophoresis (CZE)-MS, is now recognized as established technique for analysis of small charged solutes, but other modes, such as MEKC-MS and CEC-MS, are still within a period of development in terms of both MS-compatible pseudostationary phases and columns as well as applications.
我们在此描述过去两年在线毛细管电泳-质谱联用(CE-MS)的最新进展。所涵盖的技术发展包括新型接口和离子源的设计、新的毛细管涂层、缓冲液和胶束,以及近期文献中发表的各种CE-MS模式的应用。CE-MS在分析小型非手性和手性溶质方面的应用领域在各章节中有所涉及,这些章节突出了每种CE-MS模式的最新进展和可能性。本文所综述的应用领域包括非手性和手性药物、农用化学品、碳水化合物和小肽。使用带有分子胶束的胶束电动色谱(MEKC)-MS和使用填充渐缩柱的毛细管电色谱(CEC)-MS分离对映体,似乎为常规在线CE-MS的电喷雾稳定性提供了良好的耐受性。这两种模式似乎非常适合生物样品中手性药物的灵敏检测,而且在不久的将来其应用可能会增加。总体而言,似乎一种CE-MS模式,特别是毛细管区带电泳(CZE)-MS,现在已被公认为分析小型带电溶质的成熟技术,但其他模式,如MEKC-MS和CEC-MS,在与质谱兼容的假固定相和色谱柱以及应用方面仍处于发展阶段。