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支持 NFC 的电化学恒电位仪和硝化纤维素基金属电极在电化学生物侧向流动检测中的应用。

NFC-enabled potentiostat and nitrocellulose-based metal electrodes for electrochemical lateral flow assay.

机构信息

Department of Bioengineering, Imperial College London, SW7 2AZ, United Kingdom.

Department of Bioengineering, Imperial College London, SW7 2AZ, United Kingdom.

出版信息

Biosens Bioelectron. 2024 May 1;251:116124. doi: 10.1016/j.bios.2024.116124. Epub 2024 Feb 12.

Abstract

Rapid detection of pathogens at the point-of-need is crucial for preventing the spread of human, animal and plant diseases which can have devastating consequences both on the lives and livelihood of billions of people. Colorimetric, lateral flow assays consisting of a nitrocellulose membrane, are the preferred format today for low-cost on-site detection of pathogens. This assay format has, however, historically suffered from poor analytical performance and is not compatible with digital technologies. In this work, we report the development of a new class of digital diagnostics platform for precision point-of-need testing. This new versatile platform consists of two important innovations: i) A wireless and batteryless, microcontroller-based, low-cost Near Field Communication (NFC)-enabled potentiostat that brings high performance electroanalytical techniques (cyclic voltammetry, chronoamperometry, square wave voltammetry) to the field. The NFC-potentiostat can be operated with a mobile app by minimally trained users; ii) A new approach for producing nitrocellulose membranes with integrated electrodes that facilitate high performance electrochemical detection at the point-of-need. We produced an integrated system housed in a 3D-printed phone case and demonstrated its use for the detection of Maize Mosaic Virus (MMV), a plant pathogen, as a proof-of-concept application.

摘要

在现场快速检测病原体对于防止人类、动物和植物疾病的传播至关重要,这些疾病可能对数十亿人的生命和生计造成毁灭性的影响。基于硝酸纤维素膜的比色、侧向流动检测,是目前用于低成本现场病原体检测的首选方法。然而,这种检测方法在历史上一直存在分析性能差的问题,并且与数字技术不兼容。在这项工作中,我们报告了一种用于精密现场检测的新型数字诊断平台的开发。这个新的多功能平台由两个重要的创新组成:i)一种无线、无电池、基于微控制器的低成本近场通信(NFC)启用的恒电位仪,为现场带来高性能的电化学分析技术(循环伏安法、计时电流法、方波伏安法)。NFC-恒电位仪可以通过移动应用程序由训练有素的用户进行操作;ii)一种用于生产带有集成电极的硝酸纤维素膜的新方法,该方法有利于在现场进行高性能电化学检测。我们制作了一个集成系统,并将其封装在一个 3D 打印的手机壳中,以玉米花叶病毒(MMV)的检测为例,展示了其作为概念验证应用的用途。

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