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靶标调控的AgS/FeOOH异质结活性:一种直接免标记光电化学免疫传感器。

Target-regulated AgS/FeOOH heterojunction activity: a direct label-free photoelectrochemical immunosensor.

作者信息

Shao Rui-Jin, Wang Min-Li, Xue Yadong, Zhang Na, Wang Ai-Jun, Song Pei, Mei Li-Ping, Feng Jiu-Ju

机构信息

College of Geography and Environmental Sciences, College of Chemistry and Materials Science, Zhejiang Normal University, Jinhua, 321004, China.

Central Laboratory, Department of Dermatology, Precision Diagnosis and Treatment Center, Key Laboratory of Nutrition and Metabolism Research for Oncology, Affiliated Jinhua Hospital, Zhejiang University School of Medicine, Jinhua, 321000, China.

出版信息

Mikrochim Acta. 2025 Jan 18;192(2):93. doi: 10.1007/s00604-024-06929-6.

Abstract

Myoglobin (Mb), an important cardiac marker, plays a crucial role in diagnosing, monitoring, and evaluating the condition of patients with cardiovascular diseases. Here, we propose a label-free photoelectrochemical (PEC) sensor for the detection of Mb through target regulated the photoactivity of AgS/FeOOH heterojunction. The AgS/FeOOH nanospindles were synthesized and served as a sensing platform for the fabrication of bio-recognized process for Mb. Mb-aptamer was used as the responsive group to grasp the target Mb in a real sample due to its advantages of strong affinity, high stability, and ease of preparation. Mb-aptamer immunocomplex is formed in the presence of Mb, which hinders the interfacial electron transfer and then reduce the photocurrent. The proposed PEC aptasensor exhibited excellent analytical performance including wide linear range (1.0 pg mL ~ 50 ng mL), low limit of detection (0.28 pg mL), and good selectivity and stability. This work introduces an innovative approach to PEC aptasensor, offering a promising method for precise determination of human biomarkers.

摘要

肌红蛋白(Mb)是一种重要的心脏标志物,在诊断、监测和评估心血管疾病患者的病情方面发挥着关键作用。在此,我们提出一种无标记光电化学(PEC)传感器,用于通过目标调控AgS/FeOOH异质结的光活性来检测Mb。合成了AgS/FeOOH纳米纺锤体,并将其用作构建Mb生物识别过程的传感平台。由于Mb适配体具有亲和力强、稳定性高和易于制备等优点,因此被用作响应基团来捕获实际样品中的目标Mb。在存在Mb的情况下形成Mb-适配体免疫复合物,这会阻碍界面电子转移,进而降低光电流。所提出的PEC适配体传感器表现出优异的分析性能,包括宽线性范围(1.0 pg mL至50 ng mL)、低检测限(0.28 pg mL)以及良好的选择性和稳定性。这项工作为PEC适配体传感器引入了一种创新方法,为精确测定人类生物标志物提供了一种有前景的方法。

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