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同步解吸电喷雾电离质谱成像

Synchronized Desorption Electrospray Ionization Mass Spectrometry Imaging.

作者信息

Comi Troy J, Ryu Seung Woo, Perry Richard H

机构信息

Department of Chemistry, University of Illinois , Urbana, Illinois 61801, United States.

出版信息

Anal Chem. 2016 Jan 19;88(2):1169-75. doi: 10.1021/acs.analchem.5b03010. Epub 2015 Dec 24.

Abstract

Desorption electrospray ionization (DESI) has emerged as a powerful technique for mass spectral analysis and imaging under ambient conditions. Synchronization of DESI (sDESI) with the ion injection period (IT)of low-duty cycle mass spectrometers has been previously shown to improve sensitivity and reduce the amount of sample depleted during the acquisition of each spectrum (viz. MS scan time). In this report, we describe the development and characterization of an sDESI mass spectrometry imaging source (sDESI-MSI). Our results show that synchronization of DESI with the IT of an LTQ Orbitrap-XL mass spectrometer improves spatial resolution by factors of ∼4-6. In addition, under certain experimental conditions, synchronization was essential to acquire distinct MS images of low-intensity endogenous FAs (< 5% relative intensity) in fingermarks at high sampling frequencies (step sizes ≤ 75 μm). The magnitudes of these improvements in performance depend on the properties of the microdroplet spray, sample, and surface. Simulations that model analyte movement during desorption and the "washing effect" replicate the experimental results with the washing parameter having the greatest impact on performance. Thus, synchronization improves spatial resolution and sensitivity by decreasing the percentage of the total MS scan time that analytes are influenced by the "washing effect". Generally, synchronization of DESI with IT improves performance and expands the range of analytes, surfaces, and experimental conditions amenable to DESI-MSI, especially for analytes that are weakly attached to a surface.

摘要

解吸电喷雾电离(DESI)已成为一种在环境条件下进行质谱分析和成像的强大技术。先前已证明,将DESI(sDESI)与低占空比质谱仪的离子注入周期(IT)同步可提高灵敏度,并减少每次光谱采集(即MS扫描时间)期间消耗的样品量。在本报告中,我们描述了一种sDESI质谱成像源(sDESI-MSI)的开发和表征。我们的结果表明,将DESI与LTQ Orbitrap-XL质谱仪的IT同步可将空间分辨率提高约4至6倍。此外,在某些实验条件下,同步对于在高采样频率(步长≤75μm)下获取指纹中低强度内源性脂肪酸(相对强度<5%)的清晰MS图像至关重要。这些性能提升的幅度取决于微滴喷雾、样品和表面的特性。模拟解吸过程中分析物的移动以及“清洗效应”的模型重现了实验结果,其中清洗参数对性能影响最大。因此,同步通过减少分析物受“清洗效应”影响的总MS扫描时间百分比来提高空间分辨率和灵敏度。一般来说,将DESI与IT同步可提高性能,并扩大适用于DESI-MSI的分析物、表面和实验条件的范围,特别是对于弱附着在表面的分析物。

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