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Electrochemical Paper-Based Biosensor Devices for Rapid Detection of Biomarkers

机译:电化学纸基生物传感器设备可快速检测生物标志物

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摘要

In healthcare, new diagnostic tools that help in the diagnosis, prognosis, and monitoring of diseases rapidly and accurately are in high demand. For in-situ measurement of disease or infection biomarkers, point-of-care devices provide a dramatic speed advantage over conventional techniques, thus aiding clinicians in decision-making. During the last decade, paper-based analytical devices, combining paper substrates and electrochemical detection components, have emerged as important point-of-need diagnostic tools. This review highlights significant works on this topic over the last five years, from 2015 to 2019. The most relevant articles published in 2018 and 2019 are examined in detail, focusing on device fabrication techniques and materials applied to the production of paper fluidic and electrochemical cell architectures as well as on the final device assembly. Two main approaches were identified, that are, on one hand, those ones where the fabrication of the electrochemical cell is done on the paper substrate, where the fluidic structures are also defined, and, on the other hand, the fabrication of those ones where the electrochemical cell and liquid-driving paper component are defined on different substrates and then heterogeneously assembled. The main limitations of the current technologies are outlined and an outlook on the current technology status and future prospects is given.
机译:在医疗保健中,急需快速,准确地帮助疾病诊断,预后和监测的新型诊断工具。对于疾病或感染生物标志物的现场测量,即时医疗设备比常规技术具有显着的速度优势,从而可帮助临床医生进行决策。在过去的十年中,结合了纸张基材和电化学检测组件的基于纸张的分析设备已经成为重要的诊断工具。这篇综述重点介绍了从2015年到2019年的过去五年中在此主题上的重大工作。对2018年和2019年发表的最相关文章进行了详细检查,重点研究了用于纸质流体和电化学电池生产的设备制造技术和材料架构以及最终的设备组装。确定了两种主要方法,一方面是在纸质基材上进行电化学电池制造的方法,其中还定义了流体结构,另一方面是其中进行电化学方法的方法。将电化学电池和液体驱动纸组件定义在不同的基材上,然后进行异构组装。概述了当前技术的主要局限性,并对当前技术现状和未来前景进行了展望。

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