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用于分离食源性病原体的磁性纳米颗粒研究进展:识别、分离策略及应用

Advances in magnetic nanoparticles for the separation of foodborne pathogens: Recognition, separation strategy, and application.

作者信息

Xiao Fangbin, Li Weiqiang, Xu Hengyi

机构信息

State Key Laboratory of Food Science and Technology, Nanchang University, Nanchang, P. R. China.

出版信息

Compr Rev Food Sci Food Saf. 2022 Sep;21(5):4478-4504. doi: 10.1111/1541-4337.13023. Epub 2022 Aug 29.

Abstract

Foodborne pathogens contamination is one of the main sources of food safety problems. Although the existing detection methods have been developed for a long time, the complexity of food samples is still the main factor affecting the detection time and sensitivity, and the rapid separation and enrichment of pathogens is still an objective to be studied. Magnetic separation strategy based on magnetic nanoparticles (MNPs) is considered to be an effective tool for rapid separation and enrichment of foodborne pathogens in food. Therefore, this study comprehensively reviews the development of MNPs in the separation of foodborne pathogens over the past decade. First, various biorecognition reagents for identification of foodborne pathogens and their modifications on the surface of MNPs are introduced. Then, the factors affecting the separation of foodborne pathogens, including the size of MNPs, modification methods, separation strategies and separation forms are discussed. Finally, the application of MNPs in integrated detection methods is reviewed. Moreover, current challenges and prospects of MNPs for the analysis of foodborne pathogens are discussed. Further research should focus on the design of multifunctional MNPs, the processing of large-scale samples, the simultaneous analysis of multiple targets, and the development of all-in-one small analytical device with separation and detection.

摘要

食源性病原体污染是食品安全问题的主要来源之一。尽管现有的检测方法已经发展了很长时间,但食品样本的复杂性仍然是影响检测时间和灵敏度的主要因素,病原体的快速分离和富集仍然是一个有待研究的目标。基于磁性纳米颗粒(MNPs)的磁分离策略被认为是快速分离和富集食品中食源性病原体的有效工具。因此,本研究全面回顾了过去十年中MNPs在食源性病原体分离方面的发展。首先,介绍了用于识别食源性病原体的各种生物识别试剂及其在MNPs表面的修饰。然后,讨论了影响食源性病原体分离的因素,包括MNPs的尺寸、修饰方法、分离策略和分离形式。最后,综述了MNPs在集成检测方法中的应用。此外,还讨论了MNPs在食源性病原体分析方面当前面临的挑战和前景。未来的研究应集中在多功能MNPs的设计、大规模样本的处理、多个目标的同时分析以及具有分离和检测功能的一体化小型分析装置的开发上。

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