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生物传感器在真菌毒素检测中的应用,提高食品安全。

Application of Biosensors for the Detection of Mycotoxins for the Improvement of Food Safety.

机构信息

Biohazard Prevention Centre, Faculty of Biology and Environmental Protection, University of Lodz, Pomorska 141/143, 90-236 Lodz, Poland.

出版信息

Toxins (Basel). 2024 May 27;16(6):249. doi: 10.3390/toxins16060249.

Abstract

Mycotoxins, secondary metabolites synthesized by various filamentous fungi genera such as , , , , and , are potent toxic compounds. Their production is contingent upon specific environmental conditions during fungal growth. Arising as byproducts of fungal metabolic processes, mycotoxins exhibit significant toxicity, posing risks of acute or chronic health complications. Recognized as highly hazardous food contaminants, mycotoxins present a pervasive threat throughout the agricultural and food processing continuum, from plant cultivation to post-harvest stages. The imperative to adhere to principles of good agricultural and industrial practice is underscored to mitigate the risk of mycotoxin contamination in food production. In the domain of food safety, the rapid and efficient detection of mycotoxins holds paramount significance. This paper delineates conventional and commercial methodologies for mycotoxin detection in ensuring food safety, encompassing techniques like liquid chromatography, immunoassays, and test strips, with a significant emphasis on the role of electrochemiluminescence (ECL) biosensors, which are known for their high sensitivity and specificity. These are categorized into antibody-, and aptamer-based, as well as molecular imprinting methods. This paper examines the latest advancements in biosensors for mycotoxin testing, with a particular focus on their amplification strategies and operating mechanisms.

摘要

真菌毒素是各种丝状真菌属(如、、、、和)合成的次生代谢物,是具有很强毒性的化合物。它们的产生取决于真菌生长过程中的特定环境条件。真菌代谢过程的副产物,真菌毒素具有显著的毒性,可能导致急性或慢性健康并发症。作为高度危险的食品污染物,真菌毒素在农业和食品加工的整个过程中都存在威胁,从植物种植到收获后阶段。为了减轻食品生产中真菌毒素污染的风险,必须坚持良好农业和工业实践原则。在食品安全领域,快速高效地检测真菌毒素至关重要。本文阐述了常规和商业方法在食品安全检测中的应用,包括液相等技术,免疫分析和检测条,特别强调了电化学发光(ECL)生物传感器的作用,因为它们具有高灵敏度和特异性。这些方法可分为基于抗体和适配体的方法,以及分子印迹方法。本文研究了生物传感器在真菌毒素检测方面的最新进展,特别关注了它们的放大策略和工作机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5001/11209361/021b8e00203a/toxins-16-00249-g001.jpg

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