Recent advances in high-resolution traveling wave-based ion mobility separations coupled to mass spectrometry.

IF 6.9 2区 化学 Q1 SPECTROSCOPY
Cameron N Naylor, Gabe Nagy
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引用次数: 0

Abstract

Recently, ion mobility spectrometry-mass spectrometry (IMS-MS) has become more readily incorporated into various omics-based workflows. These growing applications are due to developments in instrumentation within the last decade that have enabled higher-resolution ion mobility separations. Two such platforms are the cyclic (cIMS) and structures for lossless ion manipulations (SLIM), both of which use traveling wave ion mobility spectrometry (TWIMS). High-resolution separations achieved with these techniques stem from the drastically increased pathlengths, on the order of 10 s of meters to >1 km, in both cIMS-MS and SLIM IMS-MS, respectively. Herein, we highlight recent developments and advances, for the period 2019-2023, in high-resolution traveling wave-based IMS-MS through instrumentation, calibration strategies, hyphenated techniques, and applications. Specifically, we will discuss applications including CCS calculations in multipass IMS-MS separations, coupling of IMS-MS with chromatography, imaging, and cryogenic infrared spectroscopy, and isomeric separations of glycans, lipids, and other small metabolites.

基于行波的高分辨率离子迁移率分离与质谱联用技术的最新进展。
近来,离子迁移谱-质谱(IMS-MS)已越来越容易地融入到各种基于omics的工作流程中。这些不断增长的应用得益于过去十年中仪器的发展,这些仪器实现了更高分辨率的离子迁移率分离。其中两个平台是循环(cIMS)和无损离子操作结构(SLIM),这两个平台都使用行波离子迁移谱(TWIMS)。cIMS-MS 和 SLIM IMS-MS 的路径长度分别从 10 秒米到大于 1 千米不等,这些技术实现了高分辨率分离。在此,我们将重点介绍 2019-2023 年期间基于行波的高分辨率 IMS-MS 在仪器、校准策略、连用技术和应用方面的最新发展和进步。具体来说,我们将讨论的应用包括多通道 IMS-MS 分离中的 CCS 计算,IMS-MS 与色谱、成像和低温红外光谱的耦合,以及聚糖、脂类和其他小代谢物的异构体分离。
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来源期刊
Mass Spectrometry Reviews
Mass Spectrometry Reviews 物理-光谱学
CiteScore
16.30
自引率
3.00%
发文量
56
期刊介绍: The aim of the journal Mass Spectrometry Reviews is to publish well-written reviews in selected topics in the various sub-fields of mass spectrometry as a means to summarize the research that has been performed in that area, to focus attention of other researchers, to critically review the published material, and to stimulate further research in that area. The scope of the published reviews include, but are not limited to topics, such as theoretical treatments, instrumental design, ionization methods, analyzers, detectors, application to the qualitative and quantitative analysis of various compounds or elements, basic ion chemistry and structure studies, ion energetic studies, and studies on biomolecules, polymers, etc.
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