Hu Xiaochun, Li Huilin, Yang Jingying, Wen Xintao, Wang Shuo, Pan Mingfei
Key Laboratory of Food Quality and Health of Tianjin, Tianjin University of Science and Technology, Tianjin 300457, China.
State Key Laboratory of Food Nutrition and Safety, Tianjin University of Science and Technology, Tianjin 300457, China.
Foods. 2023 Sep 15;12(18):3448. doi: 10.3390/foods12183448.
Trace amounts of mycotoxins in food matrices have caused a very serious problem of food safety and have attracted widespread attention. Developing accurate, sensitive, rapid mycotoxin detection and control strategies adapted to the complex matrices of food is crucial for in safeguarding public health. With the continuous development of nanotechnology and materials science, various nanoscale materials have been developed for the purification of complex food matrices or for providing response signals to achieve the accurate and rapid detection of various mycotoxins in food products. This article reviews and summarizes recent research (from 2018 to 2023) on new strategies and methods for the accurate or rapid detection of mold toxins in food samples using nanoscale materials. It places particular emphasis on outlining the characteristics of various nanoscale or nanostructural materials and their roles in the process of detecting mycotoxins. The aim of this paper is to promote the in-depth research and application of various nanoscale or structured materials and to provide guidance and reference for the development of strategies for the detection and control of mycotoxin contamination in complex matrices of food.
食品基质中的微量霉菌毒素引发了非常严重的食品安全问题,并引起了广泛关注。开发适用于复杂食品基质的准确、灵敏、快速的霉菌毒素检测与控制策略对于保障公众健康至关重要。随着纳米技术和材料科学的不断发展,已开发出各种纳米级材料用于复杂食品基质的净化或提供响应信号,以实现食品中各种霉菌毒素的准确快速检测。本文综述并总结了近期(2018年至2023年)利用纳米级材料准确或快速检测食品样品中霉菌毒素的新策略和方法的研究。特别强调概述各种纳米级或纳米结构材料的特性及其在霉菌毒素检测过程中的作用。本文旨在推动各种纳米级或结构化材料的深入研究与应用,并为复杂食品基质中霉菌毒素污染检测与控制策略的制定提供指导和参考。