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Recent Advances in Mycotoxin Determination for Food Monitoring via Microchip

机译:芯片检测食品中真菌毒素测定的最新进展

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摘要

Mycotoxins are one of the main factors impacting food safety. Mycotoxin contamination has threatened the health of humans and animals. Conventional methods for the detection of mycotoxins are gas chromatography (GC) or liquid chromatography (LC) coupled with mass spectrometry (MS), or enzyme-linked immunosorbent assay (ELISA). However, all these methods are time-consuming, require large-scale instruments and skilled technicians, and consume large amounts of hazardous regents and solvents. Interestingly, a microchip requires less sample consumption and short analysis time, and can realize the integration, miniaturization, and high-throughput detection of the samples. Hence, the application of a microchip for the detection of mycotoxins can make up for the deficiency of the conventional detection methods. This review focuses on the application of a microchip to detect mycotoxins in foods. The toxicities of mycotoxins and the materials of the microchip are firstly summarized in turn. Then the application of a microchip that integrates various kinds of detection methods (optical, electrochemical, photo-electrochemical, and label-free detection) to detect mycotoxins is reviewed in detail. Finally, challenges and future research directions in the development of a microchip to detect mycotoxins are previewed.
机译:霉菌毒素是影响食品安全的主要因素之一。霉菌毒素污染已经威胁到人类和动物的健康。用于检测真菌毒素的常规方法是气相色谱(GC)或液相色谱(LC)结合质谱(MS)或酶联免疫吸附测定(ELISA)。但是,所有这些方法都很耗时,需要大型仪器和熟练的技术人员,并且消耗大量的危险试剂和溶剂。有趣的是,微芯片需要较少的样品消耗和较短的分析时间,并且可以实现样品的集成,小型化和高通量检测。因此,微芯片在霉菌毒素检测中的应用可以弥补传统检测方法的不足。这篇综述着重于微芯片在食品中检测真菌毒素的应用。首先对真菌毒素和微芯片材料的毒性进行了总结。然后详细讨论了集成了多种检测方法(光学,电化学,光电化学和无标记检测)的微芯片在检测霉菌毒素中的应用。最后,展望了检测霉菌毒素的微芯片开发中的挑战和未来的研究方向。

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