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基质辅助真空电离,一种用于质谱分析的灵敏且广泛适用的电离方法。

Matrix assisted ionization in vacuum, a sensitive and widely applicable ionization method for mass spectrometry.

机构信息

Department of Chemistry, Wayne State University, Detroit, MI 48202, USA.

出版信息

J Am Soc Mass Spectrom. 2013 May;24(5):722-32. doi: 10.1007/s13361-012-0571-z. Epub 2013 Mar 23.

Abstract

An astonishingly simple new method to produce gas-phase ions of small molecules as well as proteins from the solid state under cold vacuum conditions is described. This matrix assisted ionization vacuum (MAIV) mass spectrometry (MS) method produces multiply charged ions similar to those that typify electrospray ionization (ESI) and uses sample preparation methods that are nearly identical to matrix-assisted laser desorption/ionization (MALDI). Unlike these established methods, MAIV does not require a laser or voltage for ionization, and unlike the recently introduced matrix assisted ionization inlet method, does not require added heat. MAIV-MS requires only introduction of a crystalline mixture of the analyte incorporated with a suitable small molecule matrix compound such as 3-nitrobenzonitrile directly to the vacuum of the mass spectrometer. Vacuum intermediate pressure MALDI sources and modified ESI sources successfully produce ions for analysis by MS with this method. As in ESI-MS, ion formation is continuous and, without a laser, little chemical background is observed. MAIV, operating from a surface offers the possibility of significantly improved sensitivity relative to atmospheric pressure ionization because ions are produced in the vacuum region of the mass spectrometer eliminating losses associated with ion transfer from atmospheric pressure to vacuum. Mechanistic aspects and potential applications for this new ionization method are discussed.

摘要

一种令人惊讶的简单的新方法,用于在冷真空条件下将小分子和蛋白质从固态产生气相离子。这种基质辅助电离真空(MAIV)质谱(MS)方法产生类似于电喷雾电离(ESI)的多电荷离子,并使用与基质辅助激光解吸/电离(MALDI)几乎相同的样品制备方法。与这些已建立的方法不同,MAIV 不需要激光或电压进行电离,并且与最近引入的基质辅助电离入口方法不同,不需要额外的热量。MAIV-MS 只需要将分析物与合适的小分子基质化合物(如 3-硝基苯甲腈)的结晶混合物直接引入质谱仪的真空即可。这种方法使用真空中压 MALDI 源和改良的 ESI 源成功地产生了用于 MS 分析的离子。与 ESI-MS 一样,离子形成是连续的,并且由于没有激光,观察到的化学背景很少。MAIV 从表面操作提供了相对于大气压电离显著提高灵敏度的可能性,因为离子在质谱仪的真空区域中产生,消除了与从大气压到真空的离子转移相关的损失。讨论了这种新的电离方法的机制方面和潜在应用。

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