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二维毛细管电泳-质谱联用(CE-CE-MS):将与质谱相互干扰的毛细管电泳方法与质谱相结合。

Two-dimensional capillary electrophoresis-mass spectrometry (CE-CE-MS): coupling MS-interfering capillary electromigration methods with mass spectrometry.

机构信息

Faculty of Chemistry, Aalen University, Beethovenstrasse 1, 73430, Aalen, Germany.

Pharmaceutical/Medicinal Chemistry, Institute of Pharmacy, Friedrich-Schiller-University Jena, Philosophenweg 14, 07743, Jena, Germany.

出版信息

Anal Bioanal Chem. 2018 Oct;410(25):6353-6359. doi: 10.1007/s00216-018-1157-9. Epub 2018 Jun 4.

Abstract

Electromigration separation techniques often demand certain compounds in the electrolyte to achieve the required selectivity and efficiency. These compounds, including the electrolyte itself, ampholytes, polymeric compounds for sieving, complexing agents, tensides, etc. are often non-volatile. Thus, interference with the electrospray ionization process is a common issue, impeding direct coupling of such electrolyte systems to mass spectrometry. Still, several options exist to obtain mass spectra after separation, including offline fractionation, alternative ionization, dilution, or the change to volatile constituents. In the first part of this article, these methods are discussed. However, all of these options are a compromise of separation performance and sensitivity of mass spectrometric detection. Two-dimensional capillary electrophoresis-mass spectrometry (CE-CE-MS) systems represent a promising alternative to the aforementioned challenges, as they allow the use of existing methods with best separation performance in combination with sensitive mass characterization. In this context, the second part of this article is dedicated to the advantages, limitations, and applications of this approach. Finally, an outlook towards future developments is given.

摘要

电迁移分离技术通常需要电解质中的某些化合物来实现所需的选择性和效率。这些化合物包括电解质本身、两性电解质、用于筛分的聚合化合物、络合剂、表面活性剂等,通常是非挥发性的。因此,与电喷雾电离过程的干扰是一个常见的问题,阻碍了此类电解质系统与质谱的直接耦合。然而,在分离后获得质谱的方法有几种,包括离线分级、替代电离、稀释或改变为挥发性成分。本文的第一部分讨论了这些方法。然而,所有这些选择都是对分离性能和质谱检测灵敏度的妥协。二维毛细管电泳-质谱(CE-CE-MS)系统代表了对上述挑战的一种很有前途的替代方法,因为它们允许使用具有最佳分离性能的现有方法与敏感的质量特性相结合。在这方面,本文的第二部分专门讨论了这种方法的优点、局限性和应用。最后,对未来的发展进行了展望。

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