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纸塑混合微流控芯片用于智能手机的尿液比色分析。

Paper-Plastic Hybrid Microfluidic Device for Smartphone-Based Colorimetric Analysis of Urine.

机构信息

Bio IT Convergence Laboratory, Department of Electronic Convergence Engineering, Kwangwoon University , Seoul 139-701, Republic of Korea.

出版信息

Anal Chem. 2017 Dec 19;89(24):13160-13166. doi: 10.1021/acs.analchem.7b02612. Epub 2017 Nov 28.

Abstract

In this work, a disposable paper-plastic hybrid microfluidic lab-on-a-chip (LOC) has been developed and successfully applied for the colorimetric measurement of urine by the smartphone-based optical platform using a "UrineAnalysis" Android app. The developed device was cost-effectively implemented as a stand-alone hybrid LOC by incorporating the paper-based conventional reagent test strip inside the plastic-based LOC microchannel. The LOC device quantitatively investigated the small volume (40 μL) of urine analytes for the colorimetric reaction of glucose, protein, pH, and red blood cell (RBC) in integration with the finger-actuating micropump. On the basis of our experiments, the conventional urine strip showed large deviation as the reaction time goes by, because dipping the strip sensor in a bottle of urine could not control the reaction volume. By integrating the strip sensor in the LOC device for urine analysis, our device significantly improves the time-dependent inconstancy of the conventional dipstick-based urine strip, and the smartphone app used for image analysis enhances the visual assessment of the test strip, which is a major user concern for the colorimetric analysis in point-of-care (POC) applications. As a result, the user-friendly LOC, which is successfully implemented in a disposable format with the smartphone-based optical platform, may be applicable as an effective tool for rapid and qualitative POC urinalysis.

摘要

在这项工作中,开发了一种一次性纸塑混合微流控芯片实验室(LOC),并成功地应用于智能手机光学平台,使用基于“UrineAnalysis”的 Android 应用程序对尿液进行比色测量。所开发的设备通过将基于纸的常规试剂测试条整合到基于塑料的 LOC 微通道内,以经济有效的方式实现了独立的混合 LOC。LOC 设备定量研究了小体积(40 μL)尿液分析物,用于与手指驱动微泵集成的葡萄糖、蛋白质、pH 值和红细胞(RBC)的比色反应。根据我们的实验,常规尿液条在反应时间过去后会出现较大偏差,因为将条传感器浸入尿液瓶中无法控制反应体积。通过将条传感器集成到 LOC 设备中进行尿液分析,我们的设备显著改善了常规基于条的尿液条的时间依赖性不稳定性,并且用于图像分析的智能手机应用程序增强了测试条的视觉评估,这是用户对即时护理(POC)应用中比色分析的主要关注点。结果,成功地以基于智能手机的光学平台实现了一次性格式的用户友好型 LOC,可能适用于快速和定性的即时尿液分析的有效工具。

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