适体
血红素
过氧化物酶
卡那霉素
化学
乳铁蛋白
色谱法
生物化学
血红素
分子生物学
酶
抗生素
生物
作者
Yaoting Mou,Lu Han,Yong Yin,Jianghua Liu,Yanqing Xu,Yuhang Tian,Yanfang Wu,Dongfei Chen,Yemin Guo,Xia Sun,Falan Li
出处
期刊:Analytical Methods
[Royal Society of Chemistry]
日期:2025-01-01
卷期号:17 (23): 4753-4763
被引量:2
摘要
Kanamycin (KAN) is an aminoglycoside antibiotic employed for the treatment of bacterial infections in livestock and poultry and is widely used as a veterinary drug in animal husbandry. Its overuse poses serious threats to public health and ecosystems; while traditional detection methods cannot meet the requirements of widespread application and rapid detection, developing rapid and reliable technology for KAN detection is essential. In this study, a colorimetric aptasensor was developed to rapidly detect KAN residues, leveraging the enhanced catalytic effect of aptamers on the peroxidase-like activity of the Cu2O/hemin-graphene oxide (Cu2O/hemin-GO) nanozyme. In the presence of hydrogen peroxide, the Cu2O/hemin-GO nanozyme demonstrated excellent peroxidase-like catalytic activity, oxidizing 3,3',5,5'-tetramethylbenzidine (TMB). The adsorption of aptamers on the nanozyme surface increased the negative charge density and significantly enhanced the affinity of the nanozyme for the positively charged chromogenic substrate TMB, boosting the catalytic activity nearly threefold. Upon exposure to KAN, the specific binding of aptamers to KAN reduced their adsorption on the Cu2O/hemin-GO nanozyme, leading to a decrease in the peroxidase-like activity of the Cu2O/hemin-GO nanozyme and a corresponding reduction in color change. The aptasensor exhibited excellent sensitivity with a linear detection range from 0.1 pM to 1 μM and a detection limit of 16 fM. The recovery rates for KAN in milk samples ranged from 92.05% to 110.71%. Furthermore, the colorimetric aptasensor demonstrated high selectivity and reproducibility. Overall, the colorimetric approach achieved the economical, simple and sensitive detection of KAN residues, indicating its promising potential in real-world applications. In addition, this sensing method could be applied to other targets by replacing the aptamer, providing a strategy for developing sensors facilitating rapid detection.
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