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Mass Spectrometry Imaging and Integration with Other Imaging Modalities for Greater Molecular Understanding of Biological Tissues

机译:质谱成像以及与其他成像方式的集成可以更深入地了解生物组织的分子

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摘要

Over the last two decades, mass spectrometry imaging (MSI) has been increasingly employed to investigate the spatial distribution of a wide variety of molecules in complex biological samples. MSI has demonstrated its potential in numerous applications from drug discovery, disease state evaluation through proteomic and/or metabolomic studies. Significant technological and methodological advancements have addressed natural limitations of the techniques, i.e., increased spatial resolution, increased detection sensitivity especially for large molecules, higher throughput analysis and data management. One of the next major evolutions of MSI is linked to the introduction of imaging mass cytometry (IMC). IMC is a multiplexed method for tissue phenotyping, imaging signalling pathway or cell marker assessment, at sub-cellular resolution (1 μm). It uses MSI to simultaneously detect and quantify up to 30 different antibodies within a tissue section. The combination of MSI with other molecular imaging techniques can also provide highly relevant complementary information to explore new scientific fields. Traditionally, classical histology (especially haematoxylin and eosin–stained sections) is overlaid with molecular profiles obtained by MSI. Thus, MSI-based molecular histology provides a snapshot of a tissue microenvironment and enables the correlation of drugs, metabolites, lipids, peptides or proteins with histological/pathological features or tissue substructures. Recently, many examples combining MSI with other imaging modalities such as fluorescence, confocal Raman spectroscopy and MRI have emerged. For instance, brain pathophysiology has been studied using both MRI and MSI, establishing correlations between in and ex vivo molecular imaging techniques. Endogenous metabolite and small peptide modulation were evaluated depending on disease state. Here, we review advanced ‘hot topics’ in MSI development and explore the combination of MSI with established molecular imaging techniques to improve our understanding of biological and pathophysiological processes.
机译:在过去的二十年中,质谱成像(MSI)已越来越多地用于研究复杂生物样品中各种分子的空间分布。从药物发现,疾病状态评估到蛋白质组学和/或代谢组学研究,MSI已经证明了其在众多应用中的潜力。技术和方法学上的重大进步解决了技术的自然局限性,即提高了空间分辨率,提高了检测灵敏度(尤其是对大分子),更高的通量分析和数据管理。 MSI的下一个重大发展之一与成像质谱细胞计数(IMC)的引入有关。 IMC是一种以亚细胞分辨率(1μm)用于组织表型,成像信号通路或细胞标志物评估的多路方法。它使用MSI同时检测和定量组织切片中多达30种不同的抗体。 MSI与其他分子成像技术的结合还可以提供高度相关的补充信息,以探索新的科学领域。传统上,经典组织学(特别是苏木精和曙红染色切片)覆盖有MSI获得的分子谱。因此,基于MSI的分子组织学提供了组织微环境的快照,并使药物,代谢物,脂质,肽或蛋白质与组织学/病理学特征或组织亚结构相关联。最近,出现了许多将MSI与其他成像方式(例如荧光,共焦拉曼光谱和MRI)相结合的例子。例如,已经使用MRI和MSI研究了脑病理生理学,从而建立了体内和体外分子成像技术之间的相关性。根据疾病状态评估内源性代谢物和小肽调节。在这里,我们回顾了MSI开发中的高级“热门话题”,并探索了MSI与成熟的分子成像技术的结合,以增进我们对生物学和病理生理过程的理解。

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