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采用片上三维石墨烯电极的电化学多分析物即时汗液传感器。

Electrochemical multi-analyte point-of-care perspiration sensors using on-chip three-dimensional graphene electrodes.

作者信息

Bauer Meike, Wunderlich Lukas, Weinzierl Florian, Lei Yongjiu, Duerkop Axel, Alshareef Husam N, Baeumner Antje J

机构信息

Institute of Analytical Chemistry, Chemo- and Biosensors, University of Regensburg, 93040, Regensburg, Germany.

Physical Science and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Kingdom of Saudi Arabia.

出版信息

Anal Bioanal Chem. 2021 Jan;413(3):763-777. doi: 10.1007/s00216-020-02939-4. Epub 2020 Sep 28.

Abstract

Multi-analyte sensing using exclusively laser-induced graphene (LIG)-based planar electrode systems was developed for sweat analysis. LIG provides 3D structures of graphene, can be manufactured easier than any other carbon electrode also on large scale, and in form of electrodes: hence, it is predestinated for affordable, wearable point-of-care sensors. Here, it is demonstrated that LIG facilitates all three electrochemical sensing strategies (voltammetry, potentiometry, impedance) in a multi-analyte system for sweat analysis. A potentiometric potassium-ion-selective electrode in combination with an electrodeposited Ag/AgCl reference electrode (RE) enabled the detection of potassium ions in the entire physiologically relevant range (1 to 500 mM) with a fast response time, unaffected by the presence of main interfering ions and sweat-collecting materials. A kidney-shaped interdigitated LIG electrode enabled the determination of the overall electrolyte concentration by electrochemical impedance spectroscopy at a fixed frequency. Enzyme-based strategies with amperometric detection share a common RE and were realized with Prussian blue as electron mediator and biocompatible chitosan for enzyme immobilization and protection of the electrode. Using glucose and lactate oxidases, lower limits of detection of 13.7 ± 0.5 μM for glucose and 28 ± 3 μM for lactate were obtained, respectively. The sensor showed a good performance at different pH, with sweat-collecting tissues, on a model skin system and furthermore in synthetic sweat as well as in artificial tear fluid. Response time for each analytical cycle totals 75 s, and hence allows a quasi-continuous and simultaneous monitoring of all analytes. This multi-analyte all-LIG system is therefore a practical, versatile, and most simple strategy for point-of-care applications and has the potential to outcompete standard screen-printed electrodes. Graphical abstract.

摘要

开发了一种仅使用基于激光诱导石墨烯(LIG)的平面电极系统进行多分析物传感的方法用于汗液分析。LIG提供了石墨烯的三维结构,比任何其他碳电极都更容易大规模制造,并且可以制成电极形式;因此,它非常适合用于经济实惠的可穿戴即时检测传感器。在此,证明了LIG在用于汗液分析的多分析物系统中促进了所有三种电化学传感策略(伏安法、电位法、阻抗法)。一个电位型钾离子选择性电极与一个电沉积的Ag/AgCl参比电极(RE)相结合,能够在整个生理相关范围内(1至500 mM)快速检测钾离子,不受主要干扰离子和汗液收集材料的影响。一个肾形叉指式LIG电极能够通过固定频率的电化学阻抗谱测定总电解质浓度。基于酶的安培检测策略共享一个共同的参比电极,并通过普鲁士蓝作为电子媒介体以及生物相容性壳聚糖实现了酶的固定和电极保护。使用葡萄糖氧化酶和乳酸氧化酶,分别获得了葡萄糖的检测下限为13.7±0.5 μM和乳酸的检测下限为28±3 μM。该传感器在不同pH值下、与汗液收集组织一起、在模型皮肤系统上,以及在合成汗液和人工泪液中都表现出良好的性能。每个分析周期的响应时间总计75秒,因此能够对所有分析物进行准连续和同时监测。因此,这种全LIG多分析物系统是一种用于即时检测应用的实用、通用且最简单的策略,并且有可能胜过标准的丝网印刷电极。图形摘要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b40/7809000/56e5008298dd/216_2020_2939_Figh_HTML.jpg

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