Zhang Moran, Huang Jiaming, Dai Yongjin, Jin Shanshan, Jia Qianqian, Li Xiangfei, Pang Xinyi, Sun Jing, Lu Yingjian
College of Food Science and Engineering/Collaborative, Innovation Center for Modern Grain Circulation and Safety/Key Laboratory of Grains and Oils Quality Control and Processing, Nanjing University of Finance and Economics, Nanjing, People's Republic of China.
College of Food Science and Technology, Nanjing Agricultural University, Nanjing, China.
Crit Rev Food Sci Nutr. 2025 Apr 21:1-18. doi: 10.1080/10408398.2025.2493207.
Foodborne pathogenic bacteria contamination plays a crucial role in food safety concerns, prompting an increasing focus on the detection of such pathogens in recent years. Conventional detection methods are known for their time-consuming and complex nature, hindering the timely identification of pathogenic bacteria in food. Recently, rapid detection techniques utilizing immunoassay, molecular biology, and biosensor technologies have rapidly emerged as the primary means of pathogenic bacteria detection. Molecular biology methods, characterized by heightened sensitivity and specificity, are widely embraced in this field. Notably, the thermostatic nucleic acid amplification method is recognized for combing the rapid and sensitive attributes of regular molecular biology with its user-friendly operation and equipment advantages. This comprehensive review outlines the various thermostatic nucleic acid amplification technologies, explores their potential integration with other innovative methodologies, highlights their applications in foodborne pathogenic bacteria detection, addresses the limitations of current techniques, and suggest future development paths. Ultimately, this review aims to serve as a valuable resource for enhancing and advancing foodborne pathogenic bacteria detection methodologies.
食源性病原体污染在食品安全问题中起着关键作用,近年来促使人们越来越关注此类病原体的检测。传统检测方法以耗时且复杂著称,阻碍了食品中病原菌的及时鉴定。近年来,利用免疫测定、分子生物学和生物传感器技术的快速检测技术迅速成为病原菌检测的主要手段。分子生物学方法具有更高的灵敏度和特异性,在该领域得到广泛应用。值得注意的是,恒温核酸扩增方法因其兼具常规分子生物学的快速、灵敏特性以及操作简便和设备优势而受到认可。本综述概述了各种恒温核酸扩增技术,探讨了它们与其他创新方法的潜在整合,强调了它们在食源性病原体检测中的应用,阐述了当前技术的局限性,并提出了未来的发展路径。最终,本综述旨在成为加强和推进食源性病原体检测方法的宝贵资源。