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基于 Au/BiVO 和 CdS 量子点的三明治型光电化学适体传感器用于癌胚抗原分析。

A sandwich-type photoelectrochemical aptasensor using Au/BiVO and CdS quantum dots for carcinoembryonic antigen assay.

机构信息

School of Chemistry, Chemical Engineering and Life Science, Wuhan University of Technology, Wuhan 430070, PR China.

Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory, Xianhu Hydrogen Valley, Foshan 528200, China.

出版信息

Analyst. 2021 Sep 27;146(19):5904-5912. doi: 10.1039/d1an01053k.

Abstract

A novel sandwich-type photoelectrochemical (PEC) aptasensor for the carcinoembryonic antigen (CEA) assay was fabricated using the CEA aptamer, Au/BiVO and CdS quantum dots (CdS QDs). In virtue of the localized surface plasmon resonance effect of Au nanoparticles, Au/BiVO showed an effective utilization of visible light and excellent photoactivity, and was employed as the photoanode. After CdS QDs were conjugated to Au/BiVO through the sandwich structure based on the hybridization of the CEA aptamer with two partially complementary single-stranded DNA molecules, the photocurrents were further enhanced by a resonance energy transfer between CdS QDs and Au nanoparticles. Meanwhile, the consumption of the photo-induced holes by ascorbic acid could also retard the combination of the electron-hole pairs and cause an increase of the photocurrents. However, the specific recognition of CEA by the CEA aptamer could destroy the sandwich structure and remarkably weaken the photocurrent response. Thus, the quantitative detection of CEA was connected with the decrease of the photocurrent. Benefitting from the above methods for signal enhancement, the PEC aptasensor showed a wide sensing range of 0.0001-10 ng mL and a low detection limit of 0.047 pg mL for CEA detection. The specificity, stability and recoveries of the PEC aptasensor were also excellent. Therefore, the construction of the present PEC aptasensor provides a universal and practical method for sensing other substances.

摘要

一种新型夹心型光电化学(PEC)适体传感器,用于癌胚抗原(CEA)检测,使用 CEA 适体、Au/BiVO 和 CdS 量子点(CdS QDs)构建。由于 Au 纳米粒子的局域表面等离子体共振效应,Au/BiVO 表现出有效利用可见光和优异的光活性,并被用作光电阳极。CdS QDs 通过基于 CEA 适体与两个部分互补单链 DNA 分子杂交的夹心结构与 Au/BiVO 结合后,CdS QDs 和 Au 纳米粒子之间的共振能量转移进一步增强了光电流。同时,抗坏血酸消耗光诱导空穴也会延迟电子-空穴对的复合,并导致光电流增加。然而,CEA 适体对 CEA 的特异性识别会破坏夹心结构,显著削弱光电流响应。因此,CEA 的定量检测与光电流的降低有关。受益于上述信号增强方法,PEC 适体传感器对 CEA 的检测范围为 0.0001-10ng/mL,检测限低至 0.047pg/mL。PEC 适体传感器的特异性、稳定性和回收率也非常出色。因此,本 PEC 适体传感器的构建为检测其他物质提供了一种通用实用的方法。

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