Zhou Shengyang, Xu Liguang, Kuang Hua, Xiao Jing, Xu Chuanlai
State Key Laboratory of Food Science and Technology, Jiangnan University, China.
Analyst. 2020 Nov 9;145(22):7088-7102. doi: 10.1039/d0an01408g.
The widespread presence of mycotoxins in nature not only poses a huge health risk to people in terms of food but also causes incalculable losses to the agricultural economy. As a rapidly developing technology in recent years, the mycotoxin immunoassay technology has approached or even surpassed the traditional chromatography technology in some aspects. Using this approach, the lateral flow immunoassay (LFIA) has attracted the interest of researchers due to its user-friendly operation, short time consumption, little interference, low cost, and ability to process a large number of samples at the same time. This paper provides an overview of the immunogens commonly used for mycotoxins, the development of antibodies, and the use of gold nanoparticles, quantum dots, carbon nanoparticles, enzymes, and fluorescent microsphere labeling materials for the construction of LFIAs to improve detection sensitivity. The analytical performance, detection substrates, detection limits or detection ranges of LFIA for mycotoxins have been listed in recent years. Finally, we describe the future outlook for the field, predicting that portable mobile detection devices and simultaneous quantitative detection of multiple mycotoxins is one of the important directions for future development.
霉菌毒素在自然界中的广泛存在,不仅在食品方面对人们的健康构成巨大风险,还对农业经济造成不可估量的损失。作为近年来迅速发展的技术,霉菌毒素免疫分析技术在某些方面已接近甚至超越了传统的色谱技术。利用这种方法,侧向流动免疫分析(LFIA)因其操作简便、耗时短、干扰小、成本低以及能够同时处理大量样品的能力而吸引了研究人员的关注。本文概述了常用于霉菌毒素的免疫原、抗体的发展,以及使用金纳米颗粒、量子点、碳纳米颗粒、酶和荧光微球标记材料构建LFIA以提高检测灵敏度的情况。近年来还列出了霉菌毒素LFIA的分析性能、检测底物、检测限或检测范围。最后,我们描述了该领域的未来展望,预测便携式移动检测设备以及多种霉菌毒素的同时定量检测是未来发展的重要方向之一。