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基于浓度极化的分析物预富集实现增强检测信号的片上电化学传感

On-Chip Electrochemical Sensing with an Enhanced Detecting Signal Due to Concentration Polarization-Based Analyte Preconcentration.

作者信息

Park Sinwook, Kaufman Daniel, Ben-Yoav Hadar, Yossifon Gilad

机构信息

School of Mechanical Engineering, Tel-Aviv University, Tel Aviv, 6997801, Israel.

Department of Biomedical Engineering, Tel-Aviv University, Tel Aviv, 6997801, Israel.

出版信息

Anal Chem. 2024 Apr 23;96(16):6501-6510. doi: 10.1021/acs.analchem.4c01018. Epub 2024 Apr 9.

Abstract

Here, we integrated two key technologies within a microfluidic system, an electrokinetic preconcentration of analytes by ion Concentration Polarization (CP) and local electrochemical sensors to detect the analytes, which can synergistically act to significantly enhance the detection signal. This synergistic combination, offering both decoupled and coupled operation modes for continuous monitoring, was validated by the intensified fluorescent intensities of CP-preconcentrated analytes and the associated enhanced electrochemical response using differential pulse voltammetry and chronoamperometry. The system performance was evaluated by varying the location of the active electrochemical sensor, target analyte concentrations, and electrolyte concentration using fluorescein molecules as the model analyte and Homovanillic acid (HVA) as the target bioanalyte within both phosphate-buffered saline (PBS) and artificial sweat solution. The combination of on-chip electrochemical sensing with CP-based preconcentration renders this generic approach adaptable to various analytes. This advanced system shows remarkable promise for enhancing biosensing detection in practical applications while bridging the gap between fundamental research and practical implementation.

摘要

在此,我们在微流控系统中集成了两项关键技术,即通过离子浓度极化(CP)对分析物进行电动预浓缩以及使用局部电化学传感器检测分析物,这两者协同作用可显著增强检测信号。这种协同组合提供了用于连续监测的解耦和耦合操作模式,通过CP预浓缩分析物的荧光强度增强以及使用差分脉冲伏安法和计时电流法的相关增强电化学响应得到了验证。在磷酸盐缓冲盐水(PBS)和人工汗液溶液中,以荧光素分子作为模型分析物,高香草酸(HVA)作为目标生物分析物,通过改变活性电化学传感器的位置、目标分析物浓度和电解质浓度来评估系统性能。基于芯片的电化学传感与基于CP的预浓缩相结合,使这种通用方法适用于各种分析物。这种先进的系统在弥合基础研究与实际应用之间差距的同时,在实际应用中增强生物传感检测方面显示出显著的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8210/11044107/fd08fe9ea1fb/ac4c01018_0001.jpg

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