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Optical Microscopy-Guided Laser Ablation Electrospray Ionization Ion Mobility Mass Spectrometry: Ambient Single Cell Metabolomics with Increased Confidence in Molecular Identification

机译:光学显微导向激光烧蚀电喷雾电离离子迁移率质谱:环境单细胞代谢组合具有增加的分子鉴定置信度

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摘要

Single cell analysis is a field of increasing interest as new tools are continually being developed to understand intercellular differences within large cell populations. Laser-ablation electrospray ionization mass spectrometry (LAESI-MS) is an emerging technique for single cell metabolomics. Over the years, it has been validated that this ionization technique is advantageous for probing the molecular content of individual cells in situ. Here, we report the integration of a microscope into the optical train of the LAESI source to allow for visually informed ambient in situ single cell analysis. Additionally, we have coupled this ‘LAESI microscope’ to a drift-tube ion mobility mass spectrometer to enable separation of isobaric species and allow for the determination of ion collision cross sections in conjunction with accurate mass measurements. This combined information helps provide higher confidence for structural assignment of molecules ablated from single cells. Here, we show that this system enables the analysis of the metabolite content of Allium cepa epidermal cells with high confidence structural identification together with their spatial locations within a tissue.
机译:单细胞分析是随着新工具不断发展的兴趣越来越兴趣以了解大型细胞群体内的细胞内差异。激光烧蚀电喷雾电离质谱(LaESI-MS)是一种用于单细胞代谢组学的新出现技术。多年来,已经验证了这种电离技术有利于探测原位个体细胞的分子含量。这里,我们将显微镜集成到Laesi源的光学系中,以允许视觉上通知环境,以原位单细胞分析。另外,我们已经将该“Laesi显微镜”耦合到漂移管离子迁移率质谱仪,以便能够分离等异物并允许结合精确的质量测量确定离子碰撞横截面。该组合信息有助于为从单细胞烧蚀的分子的结构分配提供更高的置信度。在这里,我们表明该系统能够分析具有高置信度结构识别的葱属CEPA表皮细胞的代谢物含量以及组织内的空间位置。

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