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近年来,食品中多种霉菌毒素同时检测策略的研究进展。

Recent advances in simultaneous detection strategies for multi-mycotoxins in foods.

机构信息

School of Quality and Technical Supervision, Hebei University, Baoding, China.

National & Local Joint Engineering Research Center of Metrology Instrument and System, Hebei University, Baoding, China.

出版信息

Crit Rev Food Sci Nutr. 2024;64(12):3932-3960. doi: 10.1080/10408398.2022.2137775. Epub 2022 Nov 4.

DOI:10.1080/10408398.2022.2137775
PMID:36330603
Abstract

Mycotoxin contamination has become a challenge in the field of food safety testing, given the increasing emphasis on food safety in recent years. Mycotoxins are widely distributed, in heavily polluted areas. Food contamination with these toxins is difficult to prevent and control. Mycotoxins, as are small-molecule toxic metabolites produced by several species belonging to the genera , , and growing in food. They are considered teratogenic, carcinogenic, and mutagenic to humans and animals. Food systems are often simultaneously contaminated with multiple mycotoxins. Due to the additive or synergistic toxicological effects caused by the co-existence of multiple mycotoxins, their individual detection requires reliable, accurate, and high-throughput techniques. Currently available, methods for the detection of multiple mycotoxins are mainly based on chromatography, spectroscopy (colorimetry, fluorescence, and surface-enhanced Raman scattering), and electrochemistry. This review provides a comprehensive overview of advances in the multiple detection methods of mycotoxins during the recent 5 years. The principles and features of these techniques are described. The practical applications and challenges associated with assays for multiple detection methods of mycotoxins are summarized. The potential for future development and application is discussed in an effort, to provide standards of references for further research.

摘要

真菌毒素污染已成为食品安全检测领域的一个挑战,近年来人们越来越重视食品安全。真菌毒素广泛分布于污染严重的地区。这些毒素污染食品很难预防和控制。真菌毒素是由、和 属的几种物种在食品中生长时产生的小分子有毒代谢物。它们被认为对人类和动物具有致畸、致癌和致突变作用。食品系统通常同时受到多种真菌毒素的污染。由于多种真菌毒素共存会产生相加或协同的毒理学效应,因此需要可靠、准确和高通量的技术来检测它们。目前,用于检测多种真菌毒素的方法主要基于色谱法、光谱法(比色法、荧光法和表面增强拉曼散射)和电化学法。本文综述了近 5 年来真菌毒素多检测方法的研究进展。描述了这些技术的原理和特点。总结了真菌毒素多检测方法分析的实际应用和挑战。讨论了未来发展和应用的潜力,以期为进一步的研究提供参考标准。

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