Mass spectrometry imaging for spatially resolved multi-omics molecular mapping

Hua Zhang, Kelly H. Lu, Malik Ebbini, Penghsuan Huang, Haiyan Lu, Lingjun Li
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Abstract

The recent upswing in the integration of spatial multi-omics for conducting multidimensional information measurements is opening a new chapter in biological research. Mapping the landscape of various biomolecules including metabolites, proteins, nucleic acids, etc., and even deciphering their functional interactions and pathways is believed to provide a more holistic and nuanced exploration of the molecular intricacies within living systems. Mass spectrometry imaging (MSI) stands as a forefront technique for spatially mapping the metabolome, lipidome, and proteome within diverse tissue and cell samples. In this review, we offer a systematic survey delineating different MSI techniques for spatially resolved multi-omics analysis, elucidating their principles, capabilities, and limitations. Particularly, we focus on the advancements in methodologies aimed at augmenting the molecular sensitivity and specificity of MSI; and depict the burgeoning integration of MSI-based spatial metabolomics, lipidomics, and proteomics, encompassing the synergy with other imaging modalities. Furthermore, we offer speculative insights into the potential trajectory of MSI technology in the future.

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用于空间分辨多组学分子图谱的质谱成像技术
近年来,通过整合空间多组学来进行多维信息测量的趋势正在为生物研究揭开新的篇章。绘制各种生物大分子(包括代谢物、蛋白质、核酸等)的分布图,甚至破译它们之间的功能相互作用和通路,被认为是对生命系统内部错综复杂的分子结构进行更全面、更细致的探索。质谱成像(MSI)是绘制不同组织和细胞样本中代谢组、脂质组和蛋白质组空间图谱的前沿技术。在这篇综述中,我们对用于空间分辨多组学分析的不同 MSI 技术进行了系统性研究,阐明了它们的原理、功能和局限性。特别是,我们关注旨在提高 MSI 分子敏感性和特异性的方法学的进步;并描绘了基于 MSI 的空间代谢组学、脂质组学和蛋白质组学的蓬勃发展,包括与其他成像模式的协同作用。此外,我们还对 MSI 技术未来的潜在发展轨迹提出了推测性见解。
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