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一种基于目标物循环信号放大策略的电化学汞传感器。

An electrochemical Hg sensor based on signal amplification strategy of target recycling.

作者信息

Zhong You Quan, Ning Tian Jiao, Cheng Lin, Xiong Wei, Wei Guo Bing, Liao Fu Sheng, Ma Guang Qiang, Hong Nian, Cui Han Feng, Fan Hao

机构信息

Department of Pharmacy, JiangXi University of Traditional Chinese Medicine, Nanchang, JiangXi, 330004, China.

Department of Pharmacy, JiangXi University of Traditional Chinese Medicine, Nanchang, JiangXi, 330004, China.

出版信息

Talanta. 2021 Feb 1;223(Pt 1):121709. doi: 10.1016/j.talanta.2020.121709. Epub 2020 Sep 29.

DOI:10.1016/j.talanta.2020.121709
PMID:33303159
Abstract

In this work, an unmodified homogeneous electrochemical sensor based on electrochemical bonding and catalytic hairpin assembly (CHA) was first constructed for the high sensitivity detection of Hg. Herein, tetraferrocene, a synthesized compound, was used as a signal marker that modified both ends of the hairpin probe to amplify the electrochemical signal. The interaction of T-Hg-T could induce the catalytic self-assembly of hairpins by means of auxiliary DNA. The rigid DNA triangle that was formed easily reaches the electrode and induced Au-S self-assembly assisted by potential, allowing tetraferrocene to reach the electrode surface and generate a sensitive electrochemical signal. CHA and tetraferrocene signal markers accomplished dual signal amplification, and the limit of detection was 0.12 pM. Differential pulse voltammetry experiments in the presence of tetraferrocene redox indicator show that the linear response range of electrochemical biosensors to mercury ions is 0.2-2000 pM, This technology offers good selectivity and high recognition efficiency for the detection of mercury ions and has broad application prospects in actual sample detection.

摘要

在这项工作中,首次构建了一种基于电化学键合和催化发夹组装(CHA)的未修饰均质电化学传感器,用于高灵敏度检测汞。在此,合成化合物四茂铁用作信号标记物,修饰在发夹探针的两端以放大电化学信号。T-Hg-T的相互作用可通过辅助DNA诱导发夹的催化自组装。形成的刚性DNA三角形易于到达电极,并在电位辅助下诱导Au-S自组装,使四茂铁到达电极表面并产生灵敏的电化学信号。CHA和四茂铁信号标记物实现了双重信号放大,检测限为0.12 pM。在存在四茂铁氧化还原指示剂的情况下进行的差分脉冲伏安法实验表明,电化学生物传感器对汞离子的线性响应范围为0.2 - 2000 pM,该技术在汞离子检测方面具有良好的选择性和高识别效率,在实际样品检测中具有广阔的应用前景。

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