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胶束电动色谱-质谱联用技术

Micellar electrokinetic chromatography-mass spectrometry.

作者信息

Yang L, Lee C S

机构信息

Department of Chemistry, Iowa State University, Ames 50011, USA.

出版信息

J Chromatogr A. 1997 Sep 12;780(1-2):207-18. doi: 10.1016/s0021-9673(97)00295-1.

Abstract

The combination of micellar electrokinetic chromatography (MEKC) with mass spectrometry (MS) is very attractive for the direct identification of analyte molecules, for the possibility of selectivity enhancement, and for the structure confirmation and analysis in a MS-MS mode. The direct coupling of MEKC with MS can be hazardous due to the effect of nonvolatile MEKC surfactants on MS performance, including the loss of analyte sensitivity and ion source contamination. The possibility of off-line coupling between MEKC and matrix-assisted laser desorption/ionization (MALDI)-MS remains to be investigated. Various approaches for on-line coupling MEKC with electrospray ionization (ESI)-MS, including the use of high-molecular-mass surfactant, an electrospray-chemical ionization (ES-CI) interface, a voltage switching and buffer renewal system, partial-filling micellar plug and anodically migrating micelles, are reviewed and evaluated. The use of an ES-CI interface is most promising for routine operation of on-line MEKC-MS under the influence of nonvolatile salts and surfactants. The use of a high-molecular-mass surfactant allows the formation of a micellar phase at very low surfactant concentrations and avoids the generation of a high level of background ions in the low m/z region. Alternatively, the application of a partial-filling micellar plug and anodically migrating micelles eliminate the introduction of MEKC micelles into the ESI-MS system. It is possible to directly transfer the conventional MEKC separations to partial-filling MEKC-ESI-MS and MEKC-ESI-MS using anodically migrating micelles without any instrument modifications.

摘要

胶束电动色谱法(MEKC)与质谱法(MS)联用,对于直接鉴定分析物分子、增强选择性以及在MS-MS模式下进行结构确认和分析而言极具吸引力。由于非挥发性MEKC表面活性剂会对MS性能产生影响,包括分析物灵敏度降低和离子源污染,因此MEKC与MS的直接联用存在风险。MEKC与基质辅助激光解吸/电离(MALDI)-MS的离线联用可能性仍有待研究。本文综述并评估了多种将MEKC与电喷雾电离(ESI)-MS在线联用的方法,包括使用高分子质量表面活性剂、电喷雾化学电离(ES-CI)接口、电压切换和缓冲液更新系统、部分填充胶束塞以及阳极迁移胶束。在非挥发性盐和表面活性剂的影响下,ES-CI接口的使用对于在线MEKC-MS的常规操作最具前景。使用高分子质量表面活性剂能够在极低的表面活性剂浓度下形成胶束相,并避免在低m/z区域产生高水平的背景离子。或者,应用部分填充胶束塞和阳极迁移胶束可避免将MEKC胶束引入ESI-MS系统。无需对仪器进行任何改装,就有可能将传统的MEKC分离直接转换为使用阳极迁移胶束的部分填充MEKC-ESI-MS和MEKC-ESI-MS。

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