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发展一种准稳态流动电化学纸基分析器件。

Development of a Quasi-Steady Flow Electrochemical Paper-Based Analytical Device.

机构信息

Department of Chemistry, Colorado State University , Fort Collins, Colorado 80523, United States.

出版信息

Anal Chem. 2016 Nov 1;88(21):10639-10647. doi: 10.1021/acs.analchem.6b03010. Epub 2016 Oct 17.

Abstract

An electrochemical paper-based analytical device (ePAD) was developed for quasi-steady flow detection at microwire electrodes, for the first time. The device implements a fan shaped geometry connected to an analysis channel whereby solution is pulled from an inlet, through a channel, and into the steadily increasing capillary network of the fan. The network counteracts the decrease in solution flow rate associated with increasing viscosity within the channel, generating quasi-steady flow within the analysis channel. Microwire electrodes were embedded between two paper layers within the analysis channel, such that solution flow occurred on both sides of the wire electrodes. The quasi-steady flow ePAD increased the current by 2.5 times and 0.7 times from a saturated channel with no flow and from a single-layer paper device with flow, respectively. Amperometric detection was used for flow injection analysis (FIA) of multiple analytes at both Au and Pt microwire working electrodes, both of which provided similar sensitivity (ca. 0.2 mM) when normalized to the same standard. The two-layer paper devices provided a detection limit of 31 μM for p-aminophenol (PAP) using Pt electrodes and was also used to detect enzyme activity for the reaction of β-galactosidase with p-aminophenyl-galactopyranoside (PAPG). Measured enzyme kinetics provided similar V (0.079 mM/min) and K (0.36 mM) values as those found in the literature. This device shows great promise toward use in enzyme-linked immunosorbent assays or other analytical techniques where flow or washing steps are necessary. The developed sensor provides a simple and inexpensive device capable of performing multiple injection analysis with steady-flow and online detection that would normally require an external pump to perform.

摘要

首次开发了一种用于在微丝电极上进行准稳态流动检测的电化学纸质分析装置(ePAD)。该装置实现了与分析通道相连的扇形几何形状,溶液从入口被吸入通道,并进入扇形不断增加的毛细管网络。该网络抵消了通道内粘度增加导致的溶液流速下降,从而在分析通道内产生准稳态流动。微丝电极被嵌入分析通道的两个纸层之间,使得溶液在丝电极的两侧流动。准稳态流动 ePAD 使电流分别从无流动的饱和通道增加了 2.5 倍和 0.7 倍,从具有流动的单层纸装置增加了 2.5 倍和 0.7 倍。安培检测用于在 Au 和 Pt 微丝工作电极上进行多种分析物的流动注射分析(FIA),当归一化为相同标准时,两者均提供相似的灵敏度(约 0.2 mM)。双层纸装置使用 Pt 电极对 p-氨基酚(PAP)的检测限为 31 μM,还用于检测β-半乳糖苷酶与 p-氨基苯半乳糖吡喃糖苷(PAPG)反应的酶活性。测量的酶动力学提供了与文献中相似的 V(0.079 mM/min)和 K(0.36 mM)值。该装置在需要流动或洗涤步骤的酶联免疫吸附测定或其他分析技术中具有很大的应用前景。所开发的传感器提供了一种简单且廉价的装置,能够进行多次注射分析,具有稳定的流动和在线检测功能,通常需要外部泵来执行。

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