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一种基于Z型二氧化钛圆盘/亚甲基蓝的新型双模式光电化学/电化学传感器用于卡那霉素检测。

A novel dual-model photoelectrochemical/electrochemical sensor based on Z-scheme TiO disks/methylene blue for kanamycin detection.

作者信息

Geng Wenchao, Liu Huimin, Yan Zhiyi, Ji Jiangying, Wang Fei, Yang Ruiying

机构信息

School of Chemical and Printing Dyeing Engineering, Henan University of Engineering, Zhengzhou, 451191, China.

College of Public Health, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Anal Methods. 2024 Jul 18;16(28):4691-4699. doi: 10.1039/d4ay01023j.

DOI:10.1039/d4ay01023j
PMID:38973362
Abstract

Herein, a new dual-model photoelectrochemical (PEC)/electrochemical (EC) sensor based on Z-scheme titanium dioxide (TiO) disk/methylene blue (MB) sensibilization for the detection of kanamycin (Kana) was developed. Metal-organic framework-derived porous TiO disks were synthesized and exhibited excellent anodic photocurrent under visible light excitation. Subsequently, amino-labeled double-stranded DNA (dsDNA) was introduced into the modified electrode. Photocurrent was enhanced with MB embedded in dsDNA to form Z-scheme TiO/MB sensibilization. When the target, Kana, was present, it specifically bound to the aptamer in the dsDNA, leading to the disruption of the dsDNA structure and the release of MB. This release of MB and the increase in target spatial resistance resulted in a significant weakening of PEC signal and a decreased oxidation peak current of MB. The PEC sensor successfully detected Kana in the range of 2-1000 pM with an LOD of 0.17 pM. Meanwhile, the EC sensor for Kana detection showed a linear range of 5-500 pM with an LOD of 1.8 pM. Additionally, the sensor exhibited excellent selectivity, reproducibility, stability, and good recoveries when applied to milk and honey samples. As a result, this method has the potential for application in ensuring food safety through the rapid determination of antibiotics in food.

摘要

在此,开发了一种基于Z型二氧化钛(TiO)圆盘/亚甲蓝(MB)敏化的新型双模式光电化学(PEC)/电化学(EC)传感器,用于检测卡那霉素(Kana)。合成了金属有机框架衍生的多孔TiO圆盘,并在可见光激发下表现出优异的阳极光电流。随后,将氨基标记的双链DNA(dsDNA)引入修饰电极。通过将MB嵌入dsDNA中形成Z型TiO/MB敏化,光电流增强。当存在目标物Kana时,它特异性地与dsDNA中的适配体结合,导致dsDNA结构破坏和MB释放。MB的这种释放以及目标物空间电阻的增加导致PEC信号显著减弱和MB的氧化峰电流降低。该PEC传感器成功检测到2-1000 pM范围内的Kana,检测限为0.17 pM。同时,用于检测Kana的EC传感器的线性范围为5-500 pM,检测限为1.8 pM。此外,该传感器在应用于牛奶和蜂蜜样品时表现出优异的选择性、重现性、稳定性和良好的回收率。因此,该方法具有通过快速测定食品中的抗生素来确保食品安全的应用潜力。

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