色谱 ›› 2024, Vol. 42 ›› Issue (2): 150-158.DOI: 10.3724/SP.J.1123.2023.11005

• 专论与综述 • 上一篇    下一篇

质谱成像技术在环境污染物分析及毒性研究中的应用进展

李芳, 罗茜()   

  1. 中国科学院深圳先进技术研究院, 广东 深圳 518055
  • 收稿日期:2023-11-06 出版日期:2024-02-08 发布日期:2024-02-20
  • 通讯作者: * Tel:(0755)86392421,E-mail:qian.luo@siat.ac.cn.
  • 基金资助:
    科技部重点研发计划(2022YFF0713004);国家自然科学基金(22076197);深圳市科技计划(JCYJ202208181016180040)

Application advances of mass spectrometry imaging technology in environmental pollutants analysis and their toxicity research

LI Fang, LUO Qian()   

  1. Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China
  • Received:2023-11-06 Online:2024-02-08 Published:2024-02-20
  • Supported by:
    National Key R&D Program of China(2022YFF0713004);National Natural Science Foundation of China(22076197);Shenzhen Science and Technology Program(JCYJ202208181016180040)

摘要:

环境污染暴露与人类健康和疾病发生发展密切相关。污染物进入生物体内会被代谢和蓄积,通过与多种生物分子相互作用产生毒性效应。阐明污染物在生物体内的分布特征,明确其引发的毒性效应并发现关键毒性生物标志物,是环境毒理学研究的重要内容。外源性污染物在不同组织和器官中的代谢程度和累积情况存在差异,内源性生物分子合成和累积也具有精准的空间分布,因此对它们在生物体内的空间分布进行原位可视化分析具有重要意义。质谱因出色的定性和定量能力成为化合物分析的关键技术,以它为基础的质谱成像技术(MSI)是一种新兴分子影像技术,单次分析可提供组织切片上数百种内源性和外源性化合物的结构、含量和空间分布信息。该技术具有免标记、无需复杂样品前处理、高灵敏和高通量等优点,已被用于生物学、药学和临床研究中。近年来,MSI技术已成为环境分析和毒理学研究中最具前景的新技术之一,不仅可表征环境污染物在生物体整体和特定器官内的时空分布特征,还可通过开展空间代谢组学解析内源性代谢物对暴露的应答情况。本文介绍了常见MSI技术电离源的原理和特点、常用质量分析器及分析流程,对其在环境污染物分析和毒理学研究方面的应用进行了全面综述,并对未来发展方向进行了展望。

关键词: 质谱成像, 空间代谢组学, 环境污染物, 可视化分析, 空间分布, 毒性, 综述

Abstract:

Environmental exposures have significant impacts on human health and can contribute to the occurrence and development of diseases. Pollutants can enter the body through ingestion, inhalation, dermal absorption, or mother-to-child transmission, and can metabolize and/or accumulate in different tissues and organs. These pollutants can recognize and interact with various biomolecules, including DNA, RNA, proteins, and metabolites, disrupting biological processes and leading to adverse effects in living organisms. Thus, it is crucial to analysis the exogenous pollutants in the body, identify potential biomarkers and investigate their toxic effects. Numerous studies have shown that the metabolism rate of environmental pollutants greatly differs in various tissues and organs, their accumulation is also heterogeneous and dynamically changing. Moreover, the synthesis and accumulation of endogenous metabolites exhibit precise spatial distributions in tissues and cells. Mapping the spatial distributions of both pollutants and endogenous metabolites can discover relevant exposure biomarkers and provide a better understanding of their toxic effects and molecular mechanisms. Mass spectrometry is currently the preferred method for the qualitative and quantitative analysis of various compounds, and has been extensively utilized in pollutant and metabolomics analyses. Mass spectrometry imaging (MSI) is an emerging technology for molecular imaging that combines the information obtained by mass spectrometry with the visualization of the two- and three-dimensional spatial distributions of various molecular species in thin sample sections. Unlike other molecular imaging techniques, MSI can perform the label-free and untargeted analysis of thousands of molecules, such as elements, metabolites, lipids, peptides, proteins, pollutants, and drugs, in a single experiment with high sensitivity and throughput. Different MSI technologies, such as matrix-assisted laser desorption ionization mass spectrometry imaging, secondary ion mass spectrometry imaging, desorption electrospray ionization mass spectrometry imaging, and laser ablation inductively coupled plasma mass spectrometry imaging, have been introduced for the mapping of compounds and elements in biological, medical, and clinical research. MSI technologies have recently been utilized to characterize the spatial distribution of pollutants in the whole body and specific tissues of organisms, assess the toxic effects of pollutants at the molecular level, and identify exposure biomarkers. Such developments have brought new perspectives to investigate the toxicity of environmental pollutants. In this review, we provide an overview of the principles, characteristics, mass analyzers, and workflows of different MSI techniques and introduce their latest application advances in the analysis of environmental pollutants and their toxic effects.

Key words: mass spectrometry imaging (MSI), spatial metabolomics, environmental pollutants, visualization analysis, spatial distribution, toxicity, review

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