School of Food and Biological Engineering, Jiangsu University, Zhenjiang, China.
Focusight Technology (Jiangsu) Co., LTD, Changzhou, China.
Compr Rev Food Sci Food Saf. 2024 Jan;23(1):e13266. doi: 10.1111/1541-4337.13266.
Mycotoxin contamination of food crops is a global challenge due to their unpredictable occurrence and severe adverse health effects on humans. Therefore, it is of great importance to develop effective tools to prevent the accumulation of mycotoxins through the food chain. The use of magnetic nanoparticle (MNP)-assisted biosensors for detecting mycotoxin in complex foodstuffs has garnered great interest due to the significantly enhanced sensitivity and accuracy. Within such a context, this review includes the fundamentals and recent advances (2020-2023) in the area of mycotoxin monitoring in food matrices using MNP-based aptasensors and immunosensors. In this review, we start by providing a comprehensive introduction to the design of immunosensors (natural antibody or nanobody, random or site-oriented immobilization) and aptasensors (techniques for aptamer selection, characterization, and truncation). Meanwhile, special attention is paid to the multifunctionalities of MNPs (recoverable adsorbent, versatile carrier, and signal indicator) in preparing mycotoxin-specific biosensors. Further, the contribution of MNPs to the multiplexing determination of various mycotoxins is summarized. Finally, challenges and future perspectives for the practical applications of MNP-assisted biosensors are also discussed. The progress and updates of MNP-based biosensors shown in this review are expected to offer readers valuable insights about the design of MNP-based tools for the effective detection of mycotoxins in practical applications.
食物作物中的真菌毒素污染是一个全球性的挑战,因为它们的发生具有不可预测性,并且会对人类健康产生严重的不良影响。因此,开发有效的工具来防止真菌毒素通过食物链积累非常重要。由于显著提高的灵敏度和准确性,基于磁性纳米粒子(MNP)的生物传感器用于检测复杂食品中的真菌毒素引起了极大的兴趣。在这种情况下,本综述包括了使用基于 MNP 的适配体传感器和免疫传感器在食品基质中监测真菌毒素的基本原理和最新进展(2020-2023 年)。在本综述中,我们首先全面介绍了免疫传感器(天然抗体或纳米抗体、随机或定向固定化)和适配体传感器(适体选择、表征和截断技术)的设计。同时,特别关注 MNP 在制备真菌毒素特异性生物传感器方面的多功能性(可回收吸附剂、多功能载体和信号指示剂)。此外,还总结了 MNP 对各种真菌毒素的多重测定的贡献。最后,还讨论了 MNP 辅助生物传感器实际应用的挑战和未来展望。本综述中展示的基于 MNP 的生物传感器的进展和更新有望为读者提供有关基于 MNP 的工具设计的有价值的见解,以实现实际应用中真菌毒素的有效检测。