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Advances in the Application of Aptamer Biosensors to the Detection of Aminoglycoside Antibiotics. | LitMetric

Advances in the Application of Aptamer Biosensors to the Detection of Aminoglycoside Antibiotics.

Antibiotics (Basel)

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.

Published: November 2020

AI Article Synopsis

  • Antibiotic abuse, especially of aminoglycoside antibiotics (AGs), is a growing concern due to its harmful effects on human health and the environment, with residues often found in food and the environment.
  • There is an urgent need for effective, on-site detection methods for AGs, as traditional methods may not be sufficient.
  • The paper discusses the use of nucleic acid aptamers as a promising technology for detecting AGs in various sensor formats, highlighting their advantages such as high specificity, cost-effectiveness, and consistency in production.

Article Abstract

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.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7695002PMC
http://dx.doi.org/10.3390/antibiotics9110787DOI Listing

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