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Electrochemical affinity biosensors for detection of mycotoxins: A review

机译:电化学亲和力生物传感器检测真菌毒素的研究进展

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This review discusses the current state of electrochemical biosensors in the determination of mycotoxins in foods. Mycotoxins are highly toxic secondary metabolites produced by molds. The acute toxicity of these results in serious human and animal health problems, although it has been only since early 1960s when the first studied aflatoxins were found to be carcinogenic. Mycotoxins affect a broad range of agricultural products, most important cereals and cereal-based foods. A majority of countries, mentioning especially the European Union, have established preventive programs to control contamination and strict laws of the permitted levels in foods. Official methods of analysis of mycotoxins normally requires sophisticated instrumentation, e.g. liquid chromatography with fluorescence or mass detectors, combined with extraction procedures for sample preparation. For about sixteen years, the use of simpler and faster analytical procedures based on affinity biosensors has emerged in scientific literature as a very promising alternative, particularly electrochemical (i.e., amperometric, impedance, potentiometric or conductimetric) affinity biosensors due to their simplicity and sensitivity. Typically, electrochemical biosensors for mycotoxins use specific antibodies or aptamers as affinity ligands, although recombinant antibodies, artificial receptors and molecular imprinted polymers show potential utility. This article deals with recent advances in electrochemical affinity biosensors for mycotoxins and covers complete literature from the first reports about sixteen years ago.
机译:这篇综述讨论了食品中霉菌毒素测定中电化学生物传感器的现状。霉菌毒素是霉菌产生的剧毒次生代谢产物。尽管直到1960年代初才首次发现黄曲霉毒素具有致癌性,但这些物质的急性毒性导致严重的人类和动物健康问题。霉菌毒素影响广泛的农产品,最重要的谷物和谷物食品。大多数国家,特别是欧洲联盟,已经制定了预防计划,以控制污染并严格控制食品中允许的含量水平。官方分析真菌毒素的方法通常需要复杂的仪器,例如带有荧光或质谱检测器的液相色谱,结合提取程序进行样品制备。约十六年来,基于亲和力生物传感器的更简单,更快速的分析程序的使用已成为科学文献中非常有前途的替代方法,尤其是电化学(即电流,阻抗,电位或电导)亲和力生物传感器,因为它们的简单性和敏感性。通常,尽管重组抗体,人工受体和分子印迹聚合物显示出潜在的效用,但真菌毒素的电化学生物传感器使用特定的抗体或适体作为亲和配体。本文介绍了真菌毒素的电化学亲和力生物传感器的最新进展,并涵盖了大约16年前的第一批报告的完整文献。

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