Department of Electronics and Biomedical Engineering, University of Barcelona, Carrer Marti i Franques. 1, 08028, Barcelona, Spain.
Department of Electronics and Biomedical Engineering, University of Barcelona, Carrer Marti i Franques. 1, 08028, Barcelona, Spain.
Biosens Bioelectron. 2020 Apr 15;154:112074. doi: 10.1016/j.bios.2020.112074. Epub 2020 Feb 7.
A miniature internet of things (IoT)-based point-of-care testing (PoCT) fluorescence reader, able to perform both intensity and time-resolved measurements of different fluorescent tags, is presented. This low cost platform has been conceived for performing tests in low-resource and remote settings, displaying versatile performance and yet simple operation. It consists on an external case of 43 × 30 × 42 mm (built in a 3D-printer) where all the elements are fixed, including some basic optics (3 lenses and 2 filters), a laser diode and a custom designed Single-Photon Avalanche Diodes (SPADs) camera. Both, the laser and the camera are controlled by a Field Programmable Gate Array (FPGA) with IoT capabilities. The PoCT was validated by detecting Plasmodium antigen in a fluorescent enzyme-linked immunosorbent assay (ELISA) using a fluorescence substrate. The results were compared to those provided in parallel by two commercial fluorescent plate readers. As it will be shown, the PoCT fluorescent readout was more sensitive than its colorimetric counterpart. Furthermore, the PoCT displayed similar signal trends and levels of detection than the bulkier and more expensive commercial fluorescence plate readers. These results demonstrate that the PoCT platform developed could bring the performance of central laboratory assay techniques closer to the end-user level.
一种基于物联网的即时检测(PoCT)荧光阅读器,能够对不同荧光标记物进行强度和时间分辨测量,现已面世。该低成本平台旨在用于在资源匮乏和偏远地区进行检测,具有多功能性和简单易用的特点。它由一个 43×30×42 毫米的外部外壳(通过 3D 打印机制造)组成,所有元件都固定在外壳内,包括一些基本光学元件(3 个透镜和 2 个滤波器)、一个激光二极管和一个定制的单光子雪崩二极管(SPAD)相机。激光和相机都由具有物联网功能的现场可编程门阵列(FPGA)控制。通过使用荧光底物检测荧光酶联免疫吸附测定(ELISA)中的疟原虫抗原,对 PoCT 进行了验证。结果与两台商用荧光板读数器提供的结果进行了平行比较。结果表明,PoCT 的荧光读数比比色法更灵敏。此外,PoCT 显示出与体积更大、更昂贵的商用荧光板读数器相似的信号趋势和检测水平。这些结果表明,所开发的 PoCT 平台能够使中心实验室检测技术的性能更接近终端用户水平。