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Updated: Sep 19, 2026

Phthalic Acid Ester-Binding DNA Aptamer Selection, Characterization, and Application to an Electrochemical Aptasensor
Published on: March 21, 2018
Atomically dispersed ruthenium on magnetic layered double hydroxide nanozyme for a multi-mode aptasensor enabling
Tian Liu1, Yuanyi Wu1, Huiyang Liu1
1School of Public Health, Southwest Medical University, Luzhou 646000, China.
Abstract:
Kanamycin residues in food pose health risks due to their ototoxicity, nephrotoxicity, and antimicrobial resistance promotion. This work reports a multi-mode aptasensor combining atomically dispersed ruthenium-doped magnetic layered double hydroxide (RuSA/MLDH) with exonuclease I-assisted amplification. RuSA/MLDH exhibits DNA-enhanced peroxidase-like activity, catalyzing H2O2-mediated 3,3',5,5'-tetramethylbenzidine oxidation to a blue product with colorimetric and photothermal signals. Kanamycin competitively binds to aptamers, disrupting aptamer-complementary strand hybridization to generate exonuclease I-accessible single-stranded DNA. Subsequent digestion reduces DNA adsorption on RuSA/MLDH, attenuating catalysis and enabling target recycling with signal decrease. This enables kanamycin detection with detection limits of 2.08, 3.85 and 1.33 nM for colorimetric, photothermal, and smartphone-based analysis. The aptasensor demonstrated excellent selectivity and determined kanamycin in honey, milk, and chicken with recoveries of 93%-108%. By integrating a magnetically separable single-atom nanozyme with exonuclease-modulated DNA-nanozyme interactions, this platform offers a sensitive, selective, and user-friendly tool for on-site antibiotic screening in complex foods with cross-validated readouts.

