Luan Yunxia, Wang Nan, Li Cheng, Guo Xiaojun, Lu Anxiang
Beijing Research Center for Agricultural Standards and Testing, Agricultural Product Quality and Safety Risk Assessment Laboratory of the Department of Agriculture, Beijing Municipal Key Laboratory of Agriculture Environment Monitoring, Beijing 100097, China.
College of Pharmacy, Jinzhou Medical University, Jinzhou 121001, China.
Antibiotics (Basel). 2020 Nov 7;9(11):787. doi: 10.3390/antibiotics9110787.
Antibiotic abuse is becoming increasingly serious and the potential for harm to human health and the environment has aroused widespread social concern. Aminoglycoside antibiotics (AGs) are broad-spectrum antibiotics that have been widely used in clinical and animal medicine. Consequently, their residues are commonly found in animal-derived food items and the environment. A simple, rapid, and sensitive detection method for on-site screening and detection of AGs is urgently required. In recent years, with the development of molecular detection technology, nucleic acid aptamers have been successfully used as recognition molecules for the identification and detection of AGs in food and the environment. These aptamers have high affinities, selectivities, and specificities, are inexpensive, and can be produced with small batch-to-batch differences. This paper reviews the applications of aptamers for AG detection in colorimetric, fluorescent, chemiluminescent, surface plasmon resonance, and electrochemical sensors for the analysis in food and environmental samples. This study provides useful references for future research.
抗生素滥用问题日益严重,其对人类健康和环境造成危害的可能性已引起社会广泛关注。氨基糖苷类抗生素(AGs)是一类广谱抗生素,已广泛应用于临床和兽医学。因此,它们的残留物常见于动物性食品和环境中。迫切需要一种简单、快速、灵敏的现场筛查和检测AGs的方法。近年来,随着分子检测技术的发展,核酸适配体已成功用作识别分子,用于食品和环境中AGs的鉴定和检测。这些适配体具有高亲和力、选择性和特异性,价格低廉,且批次间差异小。本文综述了适配体在比色、荧光、化学发光、表面等离子体共振和电化学传感器中用于AG检测在食品和环境样品分析中的应用。本研究为未来的研究提供了有用的参考。