Key Laboratory of Microsystems and Microstructures Manufacturing (Ministry of Education), Harbin Institute of Technology, Harbin 150080, China.
Anal Bioanal Chem. 2013 Jan;405(1):63-90. doi: 10.1007/s00216-012-6299-6. Epub 2012 Aug 15.
Public concern over pesticide residues has been increasing dramatically owing to the high toxicity and bioaccumulation effects of pesticides and the serious risks that they pose to the environment and human health. It is therefore crucial to monitor pesticide residues by using various analytical methods and techniques, especially highly sensitive, highly selective, simple, rapid, cost-effective, and portable ones. Biosensor strategies have become research hotspots and ideal candidates for pesticide detection, having such features as high sensitivity, fast response, robustness, low cost and miniaturization, as well as in situ and real-time monitoring. This review covers advances in the design and fabrication of biosensors for pesticide detection since 2005. Special emphasis is placed on the state-of-art selection of receptors, the use of different transduction techniques and fast screening strategies, and the application of various biosensors developed in food and environmental safety. Both advantages and drawbacks of these techniques are then summarized. Finally, challenges, strategies, and perspectives in further developing pesticide biosensors are also discussed.
公众对农药残留的担忧急剧增加,这是由于农药的高毒性和生物累积效应,以及它们对环境和人类健康造成的严重风险。因此,使用各种分析方法和技术来监测农药残留至关重要,特别是那些高灵敏度、高选择性、简单、快速、具有成本效益和便携性的方法和技术。生物传感器策略已成为农药检测的研究热点和理想选择,具有高灵敏度、快速响应、稳健性、低成本和小型化以及原位和实时监测等特点。本综述涵盖了自 2005 年以来用于农药检测的生物传感器的设计和制造方面的进展。特别强调了受体的最新选择、不同的转导技术和快速筛选策略的使用,以及在食品安全和环境安全领域开发的各种生物传感器的应用。然后总结了这些技术的优缺点。最后,还讨论了进一步开发农药生物传感器的挑战、策略和展望。