食品科学 ›› 2021, Vol. 42 ›› Issue (3): 330-338.doi: 10.7506/spkx1002-6630-20200107-083

• 专题论述 • 上一篇    下一篇

基于纳米材料的光学适配体传感器在农药残留检测中的应用研究进展

付瑞杰,周静,田风玉,焦必宁,何悦   

  1. (1.西南大学柑桔研究所,重庆 400712;2.农业农村部柑桔及苗木质量监督检验测试中心,重庆 400712)
  • 发布日期:2021-02-25
  • 基金资助:
    重庆市自然科学基金一般项目(cstc2018jscx-msybX0263);中央高校基本科研业务费专项资金项目(XDJK2019C026); 国家柑桔工程技术研究中心开放课题(NCERC2019007);国家农产品质量安全风险评估重大专项(GJFP2019012); 现代农业产业技术体系建设专项(CARS-27)

Recent Progress in Nanomaterial-Based Optical Aptasensors for the Detection of Pesticide Residues

FU Ruijie, ZHOU Jing, TIAN Fengyu, JIAO Bining, HE Yue   

  1. (1. Citrus Research Institute, Southwest University, Chongqing 400712, China; 2. Quality Supervision and Testing Centre for Citrus and Seedling, Ministry of Agriculture and Rural Affairs, Chongqing 400712, China)
  • Published:2021-02-25

摘要: 近年来,农药的广泛使用所引发的食品安全和农业生态环境问题愈发严峻。传统的检测方法普遍需要大型精密仪器设备以及专业技术人员,这极大地限制了这些检测方法在资源有限区域的推广使用。因此发展用户友好、检测速度快、灵敏度高的农药残留检测方法变得十分重要。基于纳米材料的光学适配体传感器可以实现上述农药残留检测的要求,已被公认为农药残留检测的有力工具。因此,本文就基于纳米材料的光学适配体传感器在农药残留检测中应用的最新研究进展、这一领域存在的主要挑战和未来前景进行阐述,以期促进更多优秀的研究人员致力于农药残留检测生物传感器的构建,从而为人类健康以及农业生态环境保驾护航。

关键词: 纳米材料;适配体;光学传感器;农药残留;检测

Abstract: In recent years, the widespread use of pesticides has caused increasingly serious food safety problems and agricultural ecological environmental problems throughout the world. The traditional methods for the detection of pesticide residues generally require large expensive instruments and professionals, which greatly limits their application in resource-limited areas. Therefore, it is highly important to develop user-friendly, rapid and sensitive methods for pesticide residue detection. One such method is the nanomaterial-based optical aptasensor, which is generally recognized as a powerful tool for the detection of pesticide residues. In this review, the latest progress in the application of nanomaterial-based optical aptasensors for the detection of pesticide residues is presented and the major challenges in this field are summarized. Finally, an outlook on future development is proposed with the aim of stimulating further research into developing novel biosensors for pesticide residue detection.

Key words: nanomaterials; aptamer; optical sensors; pesticide residues; detection

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