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纳米技术驱动的电化学和即时诊断设备及诊断测试的未来。

The Future of Nanotechnology-Driven Electrochemical and Electrical Point-of-Care Devices and Diagnostic Tests.

机构信息

Université de Lille, CNRS, Université Polytechnique Hauts-de-France, UMR 8520-IEMN, Lille, France; email:

出版信息

Annu Rev Anal Chem (Palo Alto Calif). 2024 Jul;17(1):173-195. doi: 10.1146/annurev-anchem-061622-012029.

Abstract

Point-of-care (POC) devices have become rising stars in the biosensing field, aiming at prognosis and diagnosis of diseases with a positive impact on the patient but also on healthcare and social care systems. Putting the patient at the center of interest requires the implementation of noninvasive technologies for collecting biofluids and the development of wearable platforms with integrated artificial intelligence-based tools for improved analytical accuracy and wireless readout technologies. Many electrical and electrochemical transducer technologies have been proposed for POC-based sensing, but several necessitate further development before being widely deployable. This review focuses on recent innovations in electrochemical and electrical biosensors and their growth opportunities for nanotechnology-driven multidisciplinary approaches. With a focus on analytical aspects to pave the way for future electrical/electrochemical diagnostics tests, current limitations and drawbacks as well as directions for future developments are highlighted.

摘要

即时检测(POC)设备已成为生物传感领域的后起之秀,旨在通过积极影响患者,以及医疗和社会保健系统,来进行疾病的预后和诊断。将患者置于关注的中心需要实施用于采集生物流体的非侵入性技术,以及开发具有集成基于人工智能的工具的可穿戴平台,以提高分析准确性和无线读出技术。已经提出了许多用于基于 POC 的传感的电气和电化学换能器技术,但在广泛部署之前,其中一些技术需要进一步开发。这篇综述重点介绍了电化学和电气生物传感器的最新创新及其在基于纳米技术的多学科方法方面的增长机会。重点关注分析方面,为未来的电气/电化学诊断测试铺平道路,突出了当前的限制和缺点以及未来发展的方向。

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