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用于流感病毒检测的电活性倏逝波腔衰荡光谱免疫传感器

Electro-active evanescent-wave cavity ring-down spectroscopy immunosensor for influenza virus detection.

作者信息

Alnaanah Shadi A, Qatamin Aymen H, Mendes Sergio B, O'Toole Martin G, Nunn Betty M, Zannon Mohammad S

机构信息

Department of Physics and Astronomy, University of Louisville, Louisville, KY 40208, USA.

Department of Applied Physics, Tafila Technical University, Al-Eis, Tafila 66110, Jordan.

出版信息

Biomed Opt Express. 2025 Feb 11;16(3):982-994. doi: 10.1364/BOE.554668. eCollection 2025 Mar 1.

Abstract

The early and accurate detection of viral pathogens is critical for effective disease management and public health safety. This study introduces an immunosensor that integrates an electro-active evanescent-wave cavity ring-down spectroscopy (EW-CRDS) platform with a sandwich-type bioassay for label-free detection of the influenza A (H5N1) hemagglutinin (HA) protein, achieving a detection limit of 15 ng/mL. The sensor is constructed by functionalizing the EW-CRDS platform within a micro-electrochemical flow cell with a monoclonal antibody specific to the target antigen. Upon antigen binding, a secondary polyclonal antibody conjugated with a redox-active methylene blue dye is captured. This dye undergoes reversible optical signal changes during redox transitions, which are electrochemically modulated and detected with high sensitivity. Unlike conventional approaches, this sensor employs electrochemical modulation to amplify surface-specific optical signals while reducing processing time and minimizing background noise. The results demonstrate the potential of this technology for real-time monitoring and rapid, reliable diagnosis of infectious diseases, offering excellent sensitivity and ease of operation in detecting influenza viruses. This work highlights the promise of the electro-active EW-CRDS platform for antigen detection in clinical settings.

摘要

病毒病原体的早期准确检测对于有效的疾病管理和公共卫生安全至关重要。本研究介绍了一种免疫传感器,该传感器将电活性倏逝波腔衰荡光谱(EW-CRDS)平台与夹心型生物测定法相结合,用于无标记检测甲型流感(H5N1)血凝素(HA)蛋白,检测限达到15 ng/mL。该传感器通过在微电化学流通池中用针对目标抗原的单克隆抗体对EW-CRDS平台进行功能化构建而成。抗原结合后,捕获与氧化还原活性亚甲蓝染料偶联的二级多克隆抗体。这种染料在氧化还原转变过程中会发生可逆的光信号变化,可通过电化学调制并以高灵敏度进行检测。与传统方法不同,该传感器采用电化学调制来放大表面特异性光信号,同时减少处理时间并将背景噪声降至最低。结果表明,该技术在实时监测以及快速、可靠地诊断传染病方面具有潜力,在检测流感病毒时具有出色的灵敏度和操作简便性。这项工作突出了电活性EW-CRDS平台在临床环境中进行抗原检测的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d134/11919342/5bc4a45d1e80/boe-16-3-982-g001.jpg

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