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基于锌/铁双金属金属有机框架衍生的纳米多孔碳的无标记电化学适体传感器用于超灵敏和选择性测定蔬菜中的百草枯。

A Label-Free Electrochemical Aptasensor Based on Zn/Fe Bimetallic MOF Derived Nanoporous Carbon for Ultra-Sensitive and Selective Determination of Paraquat in Vegetables.

作者信息

Wu Qiaoling, Tao Han, Wu Yuangen, Wang Xiao, Shi Qili, Xiang Donglin

机构信息

School of Liquor and Food Engineering, Guizhou University, Guiyang 550025, China.

Key Laboratory of Fermentation Engineering and Biopharmacy of Guizhou Province, Guizhou University, Guiyang 550025, China.

出版信息

Foods. 2022 Aug 10;11(16):2405. doi: 10.3390/foods11162405.

Abstract

Paraquat (PQ) has high acute toxicity, even at low concentrations. For most people, the main pathway of exposure to PQ is through the diet. Therefore, the development of simple and efficient methods for PQ testing is critical for ensuring food safety. In this study, a new electrochemical detection strategy for paraquat is proposed based on the specific binding of PQ to its nucleic acid aptamer. Firstly, the Zn/Fe bimetallic ZIF derived nanoporous carbon (Zn/Fe-ZIF-NPC) and nickel hexacyanoferrate nanoparticles (NiHCF-NPs) were sequentially modified onto the glassy carbon electrode (GCE). NiHCF-NPs served as the signal probes, while Zn/Fe-ZIF-NPC facilitated electron transfer and effectively enhanced the sensing signal of NiHCF-NPs. Au nanoparticles (AuNPs) were then electrodeposited on the NiHCF-NPs/Zn/Fe-ZIF-NPC/GCE and then the thiolated aptamer was assembled on the AuNPs/NiHCF-NPs/Zn/Fe-ZIF-NPC/GCE via Au-S bonding. When incubated with PQ, the formation of PQ-aptamer complexes delayed the interfacial electron transport reaction of NiHCF-NPs, which caused a decrease in the current signals. As a result, simple and highly sensitive detection of PQ can be readily achieved by detecting the signal changes. A linear range was obtained from 0.001 to 100 mg/L with a detection limit as low as 0.34 μg/L. Due to the recognition specificity of the aptamer to its target molecule, the proposed method has excellent anti-interference ability. The prepared electrochemical aptasensor was successfully used for PQ assay in lettuce, cabbage and agriculture irrigation water samples with recoveries ranging from 96.20% to 104.02%, demonstrating the validity and practicality of the proposed method for PQ detection in real samples.

摘要

百草枯(PQ)具有高急性毒性,即使在低浓度下也是如此。对大多数人来说,接触PQ的主要途径是通过饮食。因此,开发简单高效的PQ检测方法对于确保食品安全至关重要。在本研究中,基于PQ与其核酸适配体的特异性结合,提出了一种新的百草枯电化学检测策略。首先,将锌/铁双金属ZIF衍生的纳米多孔碳(Zn/Fe-ZIF-NPC)和六氰合铁酸镍纳米颗粒(NiHCF-NPs)依次修饰在玻碳电极(GCE)上。NiHCF-NPs用作信号探针,而Zn/Fe-ZIF-NPC促进电子转移并有效增强NiHCF-NPs的传感信号。然后将金纳米颗粒(AuNPs)电沉积在NiHCF-NPs/Zn/Fe-ZIF-NPC/GCE上,然后通过Au-S键将硫醇化适配体组装在AuNPs/NiHCF-NPs/Zn/Fe-ZIF-NPC/GCE上。当与PQ孵育时,PQ-适配体复合物的形成延迟了NiHCF-NPs的界面电子传输反应,导致电流信号降低。结果,通过检测信号变化可以很容易地实现对PQ的简单且高度灵敏的检测。获得了0.001至100 mg/L的线性范围,检测限低至0.34 μg/L。由于适配体对其靶分子的识别特异性,所提出的方法具有优异的抗干扰能力。所制备的电化学适配体传感器成功用于生菜、卷心菜和农业灌溉水样中的PQ测定,回收率在96.20%至104.02%之间,证明了所提出的方法在实际样品中检测PQ的有效性和实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24a6/9407144/9f5d135ce41f/foods-11-02405-sch001.jpg

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