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中国精品科技期刊2020
吴梦娇,胡骁飞,赵秋艳,等. 玉米赤霉烯酮电化学检测技术研究进展J. 食品工业科技,2026,47(5):1−10. doi: 10.13386/j.issn1002-0306.2025030309.
引用本文: 吴梦娇,胡骁飞,赵秋艳,等. 玉米赤霉烯酮电化学检测技术研究进展J. 食品工业科技,2026,47(5):1−10. doi: 10.13386/j.issn1002-0306.2025030309.
WU Mengjiao, HU Xiaofei, ZHAO Qiuyan, et al. Recent Advances in Electrochemical Detection Techniques for ZearalenoneJ. Science and Technology of Food Industry, 2026, 47(5): 1−10. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025030309.
Citation: WU Mengjiao, HU Xiaofei, ZHAO Qiuyan, et al. Recent Advances in Electrochemical Detection Techniques for ZearalenoneJ. Science and Technology of Food Industry, 2026, 47(5): 1−10. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025030309.

玉米赤霉烯酮电化学检测技术研究进展

Recent Advances in Electrochemical Detection Techniques for Zearalenone

  • 摘要: 玉米赤霉烯酮(Zearalenone,ZEN)是一种由镰刀菌属真菌产生的有毒代谢物,广泛存在于玉米、小麦等谷物及其制品中,可通过干扰内分泌系统对人和动物的健康造成潜在威胁。近年来,由于全球气候变化、储存和加工管理不当以及食品供应链复杂化,ZEN的污染问题日益严重,食品安全风险逐步增加。为降低其危害,各国相继制定了其限量标准以控制其风险。电化学传感器检测法因其高灵敏度、响应速度快和适合现场检测的特点,在玉米赤霉烯酮的检测中广泛应用。本文综述了电化学传感器检测玉米赤霉烯酮的研究进展,介绍了用于修饰电极的纳米材料以及电化学生物传感器、电化学发光传感器和分子印迹电化学传感器。同时,分析了电化学传感器在玉米赤霉烯酮检测中的挑战与发展前景,为研制高效、低成本的检测技术提供了参考与思路。

     

    Abstract: Zearalenone (ZEN) is a mycotoxin produced by Fusarium species, commonly found in maize, wheat, and other cereals, as well as their derived products. It presents substantial health risks to human and animal health by disrupting the endocrine system. Many factors have intensified ZEN contamination, which include global climate change, inadequate storage and processing practices, and the increasing complexity of the food supply chain, thus exacerbating food safety concerns. In response, various countries have set regulatory limits for ZEN level in foods. Accordingly, electrochemical sensor-based detection methods have gained widespread application in ZEN detection for their sensitivity, fast, and portability. This review summarizes the up-to-date developments in this field, including the surface modified nanomaterials, electrochemical biosensors, electrochemiluminescence sensors, and molecularly imprinted electrochemical sensors. Additionally, the challenges and future prospects of electrochemical sensors in ZEN detection are analyzed, offering insights to advance the development of efficient and cost-effective detection technologies.

     

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