食品科学 ›› 2025, Vol. 46 ›› Issue (19): 290-298.doi: 10.7506/spkx1002-6630-20250303-018

• 专题论述 • 上一篇    

原位电离质谱及其成像技术在食品安全快速检测中的应用

袁育航,廉洁,邵振超,曾大畏,王绘超,李艋   

  1. (1.中国人民公安大学侦查学院,北京 100038;2.山东省聊城市公安局刑事科学技术研究所,山东 聊城 252000)
  • 发布日期:2025-09-16
  • 基金资助:
    国家自然科学基金联合基金项目(U23B2046); 公安部重点实验室开放基金毒品监测管控与禁毒关键技术资助项目(2023-KLDMC-02)

Ambient Mass Spectrometry and Ambient ionization Mass Spectrometry Imaging in Rapid Food Safety Detection

YUAN Yuhang, LIAN Jie, SHAO Zhenchao, ZENG Dawei, WANG Huichao, LI Meng   

  1. (1. School of Investigation, People’s Public Security University of China, Beijing 100038, China; 2. Criminal Science and Technology Research Institute of Liaocheng Public Security Bureau, Shandong Province, Liaocheng 252000, China)
  • Published:2025-09-16

摘要: 随着食品安全检测需求的日益增长,传统检测方法在应对复杂食品基质和大样本量时面临检测周期长、效率低等技术瓶颈。原位电离质谱(ambient ionization mass spectrometry,AMS)技术作为一种新兴的快速分析工具,凭借其无需或仅需简单样品前处理的特点,在食品安全检测领域展现出显著优势。该技术具有分析速度快、检测效率高等特点,已成功应用于食品中农兽药残留、化学污染物及毒素等有害物质的快速检测。基于AMS的成像技术能够提供待测样品表面化学物质的空间分布信息,为原位检测提供了可视化的采样依据。本综述系统梳理了AMS技术的发展历程及其主要类别,重点阐述该技术在食品安全领域中的应用现状。同时,深入探讨基于AMS成像技术的最新研究成果。旨在为食品安全快速检测中AMS及其成像技术的应用选择提供理论依据和技术指导。

关键词: 食品安全;原位电离质谱;质谱成像;快速检测

Abstract: With the growing demand for food safety detection, traditional analytical methods face significant technical challenges, such as lengthy detection cycles and low efficiency, particularly when dealing with complex food matrices and large sample volumes. Ambient ionization mass spectrometry (AMS) has emerged as a cutting-edge rapid analytical tool, demonstrating remarkable advantages in food safety detection since it requires no or minimal sample preparation. Characterized by high analytical speed and efficiency, AMS has been successfully applied to the rapid detection of various hazardous substances in foods, including pesticide and veterinary drug residues, chemical contaminants, and toxins. Furthermore, ambient ionization mass spectrometry imaging (AMSI) provides spatial distribution information of chemical compounds on sample surfaces, offering a visual basis for in situ sampling. This review systematically outlines the development and classification of AMS, with a focus on the current status of its application in the field of food safety. Additionally, it delves into the latest advancements in AMSI. The aim of this article is to provide a theoretical foundation and technical guidance for the selection and application of AMS and AMSI in rapid food safety detection.

Key words: food safety; ambient ionization mass spectrometry; mass spectrometry imaging; rapid detection

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