一种基于microPAD的荧光酒精生物传感器

Phurpa Dema Thungon, Hui Wang, S. Vagin, C. Dyck, P. Goswami, B. Rieger, A. Meldrum
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引用次数: 2

摘要

本文介绍了一种用于乙醇检测的纸基微流体检测装置。该方法基于荧光团,该荧光团由易受末端吡啶基团质子化影响的短链共轭分子单元组成,以及用作粘合剂并使其水溶性的羧基官能化侧链。所得到的荧光纸装置在暴露于在水溶液中产生H2O2的反应时产生大的荧光变化。使用从乙醇中产生H2O2的酶催化方向,我们开发了一种两区切纸装置,该装置包含一个反应区和一个相邻的传感器区,在反应区中放置含乙醇的分析物,在传感器区中我们观察到与乙醇浓度成比例的荧光色移。流体乙醇生物传感器的检测极限为0.05 v/v%,动态范围为0.05–2 v/v%。该方法仅使用纸张传感器和智能手机摄像头即可检测消费者伏特加的酒精浓度。图形摘要
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A Fluorescent Alcohol Biosensor Using a Simple microPAD Based Detection Scheme
A paper-based microfluidic detection device for the detection of ethanol is demonstrated in this work. The method is based on a fluorophore consisting of short-chain conjugated molecular unit susceptible to the protonation of its terminal pyridine groups, along with a carboxyl-functionalized sidechain that acts as a binder and renders it water-soluble. The resulting fluorescent paper device yields large fluorescence changes when exposed to reactions that yield H2O2 in aqueous solutions. Using an enzyme-catalyzed rection that produces H2O2 from ethanol, we developed a two-zone, cut-out paper device containing a reaction zone in which the ethanol-containing analyte is placed, and an adjacent sensor zone where we observe a fluorescence color shift proportional to the ethanol concentration. The limit of detection of the fluidic ethanol biosensor was 0.05 v/v% and the dynamic range was 0.05–2 v/v%. This method was employed to detect the alcohol concentration of consumer vodkas using only a paper sensor and a smartphone camera. Graphical Abstract
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