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用于诊断中增强分析物检测的法拉第电化学阻抗谱。

Faradaic electrochemical impedance spectroscopy for enhanced analyte detection in diagnostics.

作者信息

Strong Madison E, Richards Jeffrey R, Torres Manuel, Beck Connor M, La Belle Jeffrey T

机构信息

College of Engineering, Science, and Technology, Grand Canyon University, Phoenix, AZ, USA.

College of Engineering, Science, and Technology, Grand Canyon University, Phoenix, AZ, USA.

出版信息

Biosens Bioelectron. 2021 Apr 1;177:112949. doi: 10.1016/j.bios.2020.112949. Epub 2020 Dec 31.

Abstract

Electrochemical impedance spectroscopy (EIS) is a widely implementable technique that can be applied to many fields, ranging from disease detection to environmental monitoring. EIS as a biosensing tool allows detection of a broad range of target analytes in point-of-care (POC) and continuous applications. The technique is highly suitable for multimarker detection due to its ability to produce specific frequency responses depending on the target analyte and molecular recognition element (MRE) combination. EIS biosensor development has shown promising results for the medical industry in terms of diagnosis and prognosis for various biomarkers. EIS sensors offer a cost-efficient system and rapid detection times using minimal amounts of sample volumes, while simultaneously not disturbing the sample being studied due to low amplitude perturbations. These properties make the technique highly sensitive and specific. This paper presents a review of EIS biosensing advancements and introduces different detection techniques and MREs. Additionally, EIS's underlying theory and potential surface modification techniques are presented to further demonstrate the technique's ability to produce stable, specific, and sensitive biosensors.

摘要

电化学阻抗谱(EIS)是一种可广泛应用的技术,可应用于从疾病检测到环境监测等许多领域。EIS作为一种生物传感工具,能够在即时检测(POC)和连续应用中检测多种目标分析物。由于该技术能够根据目标分析物和分子识别元件(MRE)的组合产生特定的频率响应,因此非常适合多标记物检测。EIS生物传感器的开发在各种生物标志物的诊断和预后方面已为医疗行业显示出了有前景的结果。EIS传感器提供了一种经济高效的系统,使用最少的样品体积即可实现快速检测,同时由于低幅度扰动而不会干扰正在研究的样品。这些特性使该技术具有高度的敏感性和特异性。本文综述了EIS生物传感的进展,并介绍了不同的检测技术和MRE。此外,还介绍了EIS的基础理论和潜在的表面修饰技术,以进一步证明该技术生产稳定、特异和灵敏生物传感器的能力。

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