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A Portable Smartphone-Based Sensing System Using a 3D-Printed Chip for On-Site Biochemical Assays

机译:基于便携式智能手机的传感系统使用3D打印芯片进行现场生化分析

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摘要

Recently, smartphone-based chromogenic sensing with paper-based microfluidic technology has played an increasingly important role in biochemical assays. However, generally there were three defects: (i) the paper-based chips still required complicated fabrication, and the hydrophobic boundaries on the chips were not clear enough; (ii) the chromogenic signals could not be steadily captured; (iii) the smartphone apps were restricted to the detection of specific target analytes and could not be extended for different assays unless reprogrammed. To solve these problems, in this study, a portable smartphone-based sensing system with a 3D-printed chip was developed. A 3D-printed imaging platform was designed to significantly reduce sensing errors generated during signal capture, and a brand-new strategy for signal processing in downloadable apps was established. As a proof-of-concept, the system was applied for detection of organophosphorus pesticides and multi-assay of fruit juice, showing excellent sensing performance. For different target analytes, the most efficient color channel could be selected for signal analysis, and the calibration equation could be directly set in user interface rather than programming environment, thus the developed system could be flexibly extended for other biochemical assays. Consequently, this study provides a novel methodology for smartphone-based biochemical sensing.
机译:最近,基于纸质微流体技术的基于智能手机的生色传感在生化分析中发挥着越来越重要的作用。然而,通常存在三个缺陷:(i)纸基芯片仍然需要复杂的制造,并且芯片上的疏水性边界不够清晰; (ii)无法稳定地捕获发色信号; (iii)智能手机应用程序仅限于检测特定目标分析物,除非重新编程,否则无法扩展到不同的分析方法。为了解决这些问题,在这项研究中,开发了带有3D打印芯片的基于便携式智能手机的传感系统。设计了3D打印成像平台以显着减少信号捕获过程中产生的传感错误,并建立了可下载应用程序中信号处理的全新策略。作为概念验证,该系统用于有机磷农药的检测和果汁的多测定,显示了出色的传感性能。对于不同的目标分析物,可以选择最有效的颜色通道进行信号分析,并且可以在用户界面(而不是编程环境)中直接设置校准方程式,因此可以灵活地将开发的系统扩展为其他生化分析。因此,这项研究为基于智能手机的生化传感提供了一种新颖的方法。

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