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基于信号敏感变化策略的染料敏化 NiO 光电阴极传感器用于 MC-LR 检测。

Dye-sensitized NiO photocathode sensor based on signal-sensitive change strategy for MC-LR detection.

机构信息

Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou, 215163, Jiangsu, China.

Jinan Guoke Medical Technology Development Co., Ltd, Jinan, Shandong, China.

出版信息

Mikrochim Acta. 2024 Aug 28;191(9):567. doi: 10.1007/s00604-024-06640-6.

Abstract

A novel photoelectrochemical (PEC) sensor for the detection of microcystic toxins (MC-LR) was developed on the basis of signal-sensitive change strategy. NiO nanoarray as a basic photoactive material was grown directly on the ITO glass electrode via calcination after hydrothermal reaction, while dye N719 was used to sensitize the electrode for enhancing visible light absorption, and the first signal-on stage was obtained. In the meantime, p-type CuO was applied as the signal probe attached to probe DNA (DNA) to improve the sensitivity, and the second "signal-on" stage appeared because of its synergistic effect with NiO nanoarrays. The PEC signal decreases after the target analyte MC-LR is modified on the electrode due to the stronger affinity between MC-LR and its complementary aptamer DNA; part of the CuO-DNA will dissociate from the electrode. This sensitive signal change strategy allows the detection limit of the MC-LR sensor to be as low as 1.7 pM, which offers an optional method for the sensitive and selective detection of other target molecules, with potential applications in environmental monitoring and toxin determination.

摘要

一种基于信号敏感变化策略的新型光电化学(PEC)传感器被开发用于检测微囊藻毒素(MC-LR)。通过水热反应后煅烧,将 NiO 纳米阵列直接生长在 ITO 玻璃电极上作为基本光活性材料,同时使用染料 N719 敏化电极以增强可见光吸收,从而获得第一个“信号开启”阶段。同时,p 型 CuO 被用作附着在探针 DNA(DNA)上的信号探针,以提高灵敏度,并且由于与 NiO 纳米阵列的协同作用,出现了第二个“信号开启”阶段。由于 MC-LR 与其互补适体 DNA 之间更强的亲和力,修饰在电极上的目标分析物 MC-LR 会导致 PEC 信号降低;一部分 CuO-DNA 将从电极上解离。这种灵敏的信号变化策略使得 MC-LR 传感器的检测限低至 1.7 pM,为其他目标分子的灵敏和选择性检测提供了一种可选方法,在环境监测和毒素测定方面具有潜在的应用。

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