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Super-atmospheric pressure ionization mass spectrometry and its application to ultrafast online protein digestion analysis

机译:超大气压电离质谱及其在超快速在线蛋白质消化分析中的应用

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摘要

Ion source pressure plays a significant role in the process of ionization and the subsequent ion transmission inside a mass spectrometer. Pressurizing the ion source to a gas pressure greater than atmospheric pressure is a relatively new approach that aims to further improve the performance of atmospheric pressure ionization sources. For example, under a super-atmospheric pressure environment, a stable electrospray can be sustained for liquid with high surface tension such as pure water, because of the suppression of electric discharge. Even for nano-electrospray ionization (nano-ESI), which is known to work with aqueous solution, its stability and sensitivity can also be enhanced, particularly in the negative mode when the ion source is pressurized. A brief review on the development of super-atmospheric pressure ion sources, including high-pressure electrospray, field desorption and superheated ESI, and the strategies to interface these ion sources to a mass spectrometer will be given. Using a recent ESI prototype with an operating temperature at 220 degrees C under 27atm, we also demonstrate that it is possible to achieve an online Asp-specific protein digestion analysis in which the whole processes of digestion, ionization and MS acquisition could be completed on the order of a few seconds. This method is fast, and the reaction can even be monitored on a near-real-time basis. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:离子源压力在电离过程以及随后质谱仪内部的离子传输过程中起着重要作用。将离子源加压到高于大气压的气压是一种相对较新的方法,旨在进一步改善大气压电离源的性能。例如,在超大气压的环境下,由于抑制了放电,因此对于高表面张力的液体例如纯水可以维持稳定的电喷雾。即使对于已知可与水溶液一起使用的纳米电喷雾电离(nano-ESI),其稳定性和灵敏度也可以提高,尤其是在离子源加压时的负离子模式下。将简要概述超高压离子源的发展,包括高压电喷雾,场解吸和过热ESI,以及将这些离子源连接到质谱仪的策略。使用最新的ESI原型,其工作温度为220摄氏度,在27atm下运行,我们还证明了可以实现在线Asp特异性蛋白质消化分析,从而可以完成整个消化过程,电离过程和MS采集过程。几秒钟的顺序。该方法快速,甚至可以实时监测反应。版权所有(c)2016 John Wiley&Sons,Ltd.

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