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纳米结构成像质谱法描绘代谢异质性:从生物系统到亚细胞功能。

Charting Metabolism Heterogeneity by Nanostructure Imaging Mass Spectrometry: From Biological Systems to Subcellular Functions.

机构信息

Department of Medicine, School of Medicine, University of California San Diego, 9500 Gilman Dr, La Jolla, California 92093-0412, United States.

出版信息

J Am Soc Mass Spectrom. 2020 Dec 2;31(12):2392-2400. doi: 10.1021/jasms.0c00204. Epub 2020 Aug 10.

Abstract

The study of metabolism heterogeneity is essential to understand the role of metabolites in supporting and regulating biological functions. To this end, several mass spectrometry imaging (MSI) approaches have been proposed for the detection of small molecule metabolites. However, high noise from the ionization matrix and low metabolome coverage hinder their applicability for untargeted metabolomics studies across space. In this context, nanostructure imaging (/initiator) mass spectrometry (NIMS) and NIMS with fluorinated gold nanoparticles (f-AuNPs) are attractive strategies for comprehensive MSI of metabolites in biological systems, which can provide heterogeneous metabolome coverage, ultrahigh sensitivity, and high lateral resolution. In particular, NIMS with f-AuNPs permits the simultaneous detection of polar metabolites and lipids in a single and cohesive analytical session, thus allowing the systems-level interpretation of metabolic changes. In this Perspective article, we discuss the use of NIMS and f-AuNPs in the exploration of metabolism heterogeneity and provide a critical outlook on future applications of this technology for revealing the metabolic architecture that supports biological functions in health and disease, from whole organisms to tissues, single cells, and subcellular compartments.

摘要

代谢异质性的研究对于理解代谢物在支持和调节生物功能中的作用至关重要。为此,已经提出了几种质谱成像 (MSI) 方法来检测小分子代谢物。然而,离子化基质的高噪声和代谢组覆盖范围低阻碍了它们在空间上进行非靶向代谢组学研究的适用性。在这种情况下,纳米结构成像(/initiator)质谱 (NIMS) 和用氟化金纳米粒子 (f-AuNPs) 的 NIMS 是生物系统中代谢物全面 MSI 的有吸引力的策略,它们可以提供异质代谢组覆盖、超高灵敏度和高横向分辨率。特别是,用 f-AuNPs 的 NIMS 允许在单个凝聚分析会话中同时检测极性代谢物和脂质,从而允许对代谢变化进行系统水平的解释。在这篇观点文章中,我们讨论了 NIMS 和 f-AuNPs 在探索代谢异质性中的应用,并对该技术在揭示支持健康和疾病中生物功能的代谢架构方面的未来应用进行了批判性展望,从整个生物体到组织、单细胞和亚细胞区室。

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