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基于离子产额的时间分辨测量的 IR-MALDESI 方法优化。

IR-MALDESI method optimization based on time-resolved measurement of ion yields.

机构信息

W. M. Keck FTMS Laboratory for Human Health Research, Department of Chemistry, North Carolina State University, Box 8201, Raleigh, NC, 27695, USA.

出版信息

Anal Bioanal Chem. 2018 Jan;410(3):963-970. doi: 10.1007/s00216-017-0585-2. Epub 2017 Aug 29.

Abstract

In the field of mass spectrometry imaging, typical experiments involve ionization directly from complex samples with no pre-ionization separation, relying on high resolving power mass analyzers to separate ions of interest. When an ion trapping step is involved in the analysis, the dynamic range of the analysis may be limited by the capacity of the ion trap, which is easily exceeded. To minimize collection of undesired ambient species while maximizing collection of analyte signal, accurate timing between ion generation and collection is a requirement. Here, a method for achieving synchronicity between infrared laser ablation and ion collection on a Q Exactive Plus mass spectrometer is described and demonstrated through measurement of ion accumulation at fixed time points following a laser ablation event with electrospray post-ionization of ablated material. In a model imaging experiment using infrared matrix-assisted laser desorption electrospray ionization, fixing the injection time at the minimum duration required to capture all ions generated by the last laser pulse in a sequence is shown to maximize target ion abundances. Using optimized timing is shown to yield a doubling or better of useful signal compared to previously used parameters. Graphical abstract Illustration of the effects of signal optimization on data quality for a single lipid species (cholesterol) measured from mouse liver tissue.

摘要

在质谱成像领域,典型的实验涉及直接对无预电离分离的复杂样品进行电离,依靠高分辨率质量分析器来分离感兴趣的离子。当分析中涉及离子捕获步骤时,分析的动态范围可能会受到离子阱的容量限制,这很容易被超过。为了最大限度地收集分析物信号,同时最小化收集不需要的环境物种,离子产生和收集之间的精确定时是必需的。本文描述了一种在 Q Exactive Plus 质谱仪上实现红外激光烧蚀和离子收集同步的方法,并通过测量在电喷雾后离子化的烧蚀材料的激光烧蚀事件后固定时间点处的离子积累来进行了验证。在使用红外基质辅助激光解吸电喷雾电离的模型成像实验中,将注入时间固定在捕获序列中最后一个激光脉冲产生的所有离子所需的最短持续时间,可以最大限度地提高目标离子丰度。优化的定时可使有用信号增加一倍或更多,与之前使用的参数相比。

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