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基于物联网的光电倍增管和智能手机的电化学发光平台,使用 3D 打印的闭双极电极检测胆碱和多巴胺。

Internet of things-enabled photomultiplier tube- and smartphone-based electrochemiluminescence platform to detect choline and dopamine using 3D-printed closed bipolar electrodes.

机构信息

MEMS, Microfluidics, and Nanoelectronics Laboratory, Department of Electrical and Electronics Engineering, Birla Institute of Technology and Science Pilani, Hyderabad Campus, Hyderabad, India.

出版信息

Luminescence. 2022 Feb;37(2):357-365. doi: 10.1002/bio.4179. Epub 2022 Jan 7.

Abstract

There is a growing demand to realize low-cost miniaturized point-of-care testing diagnostic devices capable of performing many analytical assays. To fabricate such devices, three-dimensional printing (3DP)-based fabrication techniques provide a turnkey approach with marked precision and accuracy. Here, a 3DP fabrication technique was successfully utilized to fabricate closed bipolar electrode-based electrochemiluminescence (ECL) devices using conductive graphene filament. Furthermore, using these ECL devices, Ru(bpy) /TPrA- and luminol/H O -based electrochemistry was leveraged to sense dopamine and choline respectively. For ECL signal capture, two distinct approaches were used, first a smartphone-based miniaturized platform and the second with a photomultiplier tube embedded with the internet of things technology. Choline sensing led to a linear range 5-700 μM and 30-700 μM with a limit of detection (LOD) of 1.25 μM (R  = 0.98, N = 3) and 3.27 μM (R  = 0.97, N = 3). Furthermore, dopamine sensing was achieved in a linear range 0.5-100 μM with an LOD = 2 μM (R  = 0.99, N = 3) and LOD = 0.33 μM (R  = 0.98, N = 3). Overall, the fabricated devices have the potential to be utilized effectively in real-time applications such as point-of-care testing.

摘要

人们越来越希望能够实现低成本的微型即时检测诊断设备,这些设备能够进行多种分析检测。为了制造这样的设备,基于三维打印(3DP)的制造技术提供了一种具有显著精度和准确性的交钥匙方法。在这里,成功地利用 3DP 制造技术,使用导电石墨烯长丝制造基于双极闭合电极的电致化学发光(ECL)器件。此外,使用这些 ECL 器件,分别利用 Ru(bpy) /TPrA-和鲁米诺/H2O2电化学检测多巴胺和胆碱。为了捕获 ECL 信号,使用了两种不同的方法,第一种是基于智能手机的小型化平台,第二种是嵌入物联网技术的光电倍增管。胆碱检测的线性范围为 5-700 μM 和 30-700 μM,检测限(LOD)分别为 1.25 μM(R  = 0.98,N = 3)和 3.27 μM(R  = 0.97,N = 3)。此外,多巴胺检测的线性范围为 0.5-100 μM,检测限分别为 2 μM(R  = 0.99,N = 3)和 0.33 μM(R  = 0.98,N = 3)。总的来说,制造的设备有可能在即时检测等实时应用中得到有效利用。

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