Research Centre for Analytical Instrumentation, Institute of Cyber-Systems and Control, State Key Laboratory of Industrial Control Technology, Zhejiang University, Hangzhou 310023, PR China; College of Life Sciences, Zhejiang University, Hangzhou 310058, PR China.
Research Centre for Analytical Instrumentation, Institute of Cyber-Systems and Control, State Key Laboratory of Industrial Control Technology, Zhejiang University, Hangzhou 310023, PR China.
Food Res Int. 2021 May;143:110246. doi: 10.1016/j.foodres.2021.110246. Epub 2021 Feb 26.
The global burden of foodborne diseases is substantial and foodborne pathogens are the major cause for human illnesses. In order to prevent the spread of foodborne pathogens, detection methods are constantly being updated towards rapid, portable, inexpensive, and multiplexed on-site detection. Due to the nature of the small size and low volume, microfluidics has been applied to rapid, time-saving, sensitive, and portable devices to meet the requirements of on-site detection. Simultaneous detection of multiple pathogens is another key parameter to ensure food safety. Multiplexed detection technology, including microfluidic chip design, offers a new opportunity to achieve this goal. In this review, we introduced several sample preparation and corresponding detection methods on microfluidic devices for multiplexed detection of foodborne pathogens. In the sample preparation section, methods of cell capture and enrichment, as well as nucleic acid sample preparation, were described in detail, and in the section of detection methods, amplification, immunoassay, surface plasmon resonance and impedance spectroscopy were exhaustively illustrated. The limitations and advantages of all available experimental options were also summarized and discussed in order to form a comprehensive understanding of cutting-edge technologies and provide a comparative assessment for future investigation and in-field application.
食源性疾病的全球负担巨大,食源性致病菌是导致人类疾病的主要原因。为了防止食源性致病菌的传播,检测方法不断更新,以实现快速、便携、廉价和多重现场检测。由于体积小、体积小的特点,微流控技术已应用于快速、省时、灵敏、便携的设备,以满足现场检测的要求。同时检测多种病原体是确保食品安全的另一个关键参数。多重检测技术,包括微流控芯片设计,为实现这一目标提供了新的机会。在本综述中,我们介绍了几种基于微流控装置的用于食源性致病菌多重检测的样品制备和相应检测方法。在样品制备部分,详细描述了细胞捕获和富集方法以及核酸样品制备方法,在检测方法部分,详细说明了扩增、免疫测定、表面等离子体共振和阻抗光谱法。还总结和讨论了所有可用实验方案的局限性和优点,以便全面了解尖端技术,并为未来的研究和现场应用提供比较评估。