Aug 2026· Talanta: The International Journal of Pure and Applied Analytical Chemistry· Vol 312 Pt A, pp.
130380
· 0 citations· 43 references
Medicine
Abstract
Kanamycin (Kana) residues released into aquatic environments due to its extensive use have raised increasing concerns because of their potential risks to ecosystems and human health. In this work, we report a label-free split aptamer-modified gold nanoflower (AuNF)-based aptasensing platform with colorimetric and electrochemical readouts for the determination of Kana in water. Two thiolated split aptamer fragments (SPA1 and SPA2) were immobilized on AuNFs through Au-S bonds. The flower-like AuNFs provided a high-surface-area scaffold for aptamer loading, while the DNA modification further enhanced the peroxidase-like activity of AuNFs toward TMB oxidation. In the presence of Kana, target-induced assembly of SPA1 and SPA2 promoted the aggregation of AuNFs, which inhibited their catalytic activity toward TMB oxidation, thereby reducing oxTMB formation and the resulting colorimetric and electrochemical signals. Based on this signal-off mechanism, the platform enabled quantitative detection of Kana with linear ranges of 100-3000 nM for colorimetry and 50-2000 nM for chronoamperometry, with limits of detection of 0.51 and 0.074 nM, respectively. The method also showed satisfactory selectivity, reproducibility, and storage stability. In spiked environmental water samples, recoveries ranged from 87.7% to 106.2% with relative standard deviations below 5.0%, and the electrochemical results were in acceptable agreement with those obtained by HPLC-MS. This study provides a simple and effective dual-readout aptasensing strategy for Kana determination in environmental water samples.
While nanozyme-based inhibition strategies are attractive for on-site detection of pesticides, their sensitivity is primarily hampered by insufficient interactions at the nanozyme-pesticide interface. To address this, we developed a dual-recognition system that integrates a Fe/Cu-N-C single-atom nanozyme (SAzyme) with...
Li-Jun Wang, Kun-Rong Zhao, Ming-Hui Luo et al.· Food Chemistry· 0 citations
Tetracycline (TC) residues in milk present a potential risk to food safety and human health, highlighting the urgent need to develop rapid and reliable detection strategies. Herein, a target-induced displacement (TID)-based colorimetric aptasensor was assembled for the sensitive detection of TC using oxidase (OXD)-like...
Saddam Hussain, Zong-Da Li, Run-Han Liu et al.· Talanta: The International J...· 0 citations
A straightforward, rapid, and highly sensitive biosensor has been developed for the detection of doxorubicin (DOX) in human serum samples, achieving a low detection limit of 0.029 µM.
Chuangui Cai, Zhen Lin, Wensong Yao et al.· Microchimica Acta· 0 citations
As a prevalent heat-induced byproduct, acrylamide (AA) is frequently generated during thermal food processing, particularly in baked and fried goods. It is a Group 2A carcinogen produced via the Maillard reaction and exhibits neurotoxicity as well as reproductive and developmental toxicity. In this work, DNA nanoflower...
Yang Wen, Weiling Li, Jingwen Fan et al.· Analytical Methods· 0 citations