Ratiometric fluorescence platform for the ultrasensitive detection of kanamycin based on split aptamer co-recognition triggers Mg2+-DNAzyme-driven DNA walker systems

Sci Total Environ. 2024 Jun 10:928:172499. doi: 10.1016/j.scitotenv.2024.172499. Epub 2024 Apr 15.

Abstract

In this work, a novel 3D-DNA walker signal amplification strategy was designed to construct a fluorescent aptasensor for the detection of kanamycin (KAN). The aptasensor utilizes split aptamers for the synergistic recognition of KAN. The presence of KAN induces the split aptamers recombination to form the Mg2+-DNAzyme structure, which is activated by Mg2+ to drive the 3D-DNA walker process for cascading signal amplification. Employing gold nanoflowers (AuNFs) as walking substrate material increases the local DNA concentration to enhance the walker efficiency. The prepared fluorescent aptasensor achieved efficient and sensitive detection of KAN with satisfactory results in the concentration range of 1 × 10-8 - 1 × 10-3 μg/kg and the detection limit of 5.63 fg/kg. Meanwhile, the designed fluorescent aptasensor exhibited favorable specificity, anti-interference, storage stability and reproducibility, and verified the feasibility of its application in milk samples. The present work provides an effective tool for the regulation of KAN contamination in animal-derived foods with promising prospects.

Keywords: Fluorescent aptasensor; Gold nanoflowers; Kanamycin; Mg(2+)-DNAzyme; Split aptamers.

MeSH terms

  • Aptamers, Nucleotide* / chemistry
  • Biosensing Techniques* / methods
  • DNA, Catalytic* / chemistry
  • Fluorescence
  • Gold / chemistry
  • Kanamycin* / analysis
  • Limit of Detection
  • Magnesium / chemistry
  • Milk / chemistry

Substances

  • Kanamycin
  • Aptamers, Nucleotide
  • DNA, Catalytic
  • Gold
  • Magnesium