Institute of Quality Standardization & Testing Technology for Agro-Products, Chinese Academy of Agricultural Sciences, Beijing, China.
Key Laboratory of Agrofood Safety and Quality (Beijing), Ministry of Agriculture and Rural Areas, Beijing, China.
Crit Rev Food Sci Nutr. 2023;63(21):4942-4965. doi: 10.1080/10408398.2021.2009762. Epub 2021 Dec 2.
Excessive use of pesticides can cause contamination of the environment and agricultural products that are directly threatening human life and health. Therefore, in the process of food safety supervision, it is crucial to conduct sensitive and rapid detection of pesticide residues. The recognition element is the vital component of sensors and methods for fast testing pesticide residues in food. Improper recognition elements may lead to defects of testing methods, such as poor stability, low sensitivity, high economic costs, and waste of time. We can use the molecular biological technique to address these challenges as a good strategy for recognition element production and modification. Herein, we review the molecular biological methods of five specific recognition elements, including aptamers, genetic engineering antibodies, DNAzymes, genetically engineered enzymes, and whole-cell-based biosensors. In addition, the application of these identification elements combined with biosensor and immunoassay methods in actual detection was also discussed. The purpose of this review was to provide a valuable reference for further development of rapid detection methods for pesticide residues.
过度使用农药会导致环境和农产品受到污染,直接威胁人类的生命和健康。因此,在食品安全监管过程中,对农药残留进行敏感、快速的检测至关重要。识别元件是用于快速检测食品中农药残留的传感器和方法的重要组成部分。不合适的识别元件可能会导致检测方法存在缺陷,例如稳定性差、灵敏度低、经济成本高和耗时等问题。我们可以使用分子生物学技术来解决这些挑战,这是一种生产和修饰识别元件的好策略。本文综述了五种特定识别元件的分子生物学方法,包括适体、基因工程抗体、DNA 酶、基因工程酶和基于全细胞的生物传感器。此外,还讨论了这些识别元件与生物传感器和免疫测定方法结合在实际检测中的应用。本文的目的是为进一步开发农药残留快速检测方法提供有价值的参考。