Enzyme-Based Solid-Phase Electrochemiluminescence Sensors with Stable, Anchored Emitters for Sensitive Glucose Detection.

IF 4.9 3区 工程技术 Q1 CHEMISTRY, ANALYTICAL
Chunyin Wei, Yanyan Zheng, Fei Yan, Lifang Xu
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Abstract

Glucose (Glu) detection, as a fundamental analytical technique, has applications in medical diagnostics, clinical testing, bioanalysis and environmental monitoring. In this work, a solid-phase electrochemiluminescence (ECL) enzyme sensor was developed by immobilizing the ECL emitter in a stable manner within bipolar silica nanochannel array film (bp-SNA), enabling sensitive glucose detection. The sensor was constructed using an electrochemical-assisted self-assembly (EASA) method with various siloxane precursors to quickly modify the surface of indium tin oxide (ITO) electrodes with a bilayer SNA of different charge properties. The inner layer, including negatively charged SNA (n-SNA), attracted the positively charged ECL emitter tris(2,2'-bipyridyl)ruthenium(II) (Ru(bpy)32+) via electrostatic interaction, while the outer layer, including positively charged SNA (p-SNA), repelled it, forming a barrier that efficiently concentrated the Ru(bpy)32+ emitter in a stable manner. After modifying the amine groups on the p-SNA surface with aldehyde groups, glucose oxidase (GOx) was covalently immobilized, forming the enzyme electrode. In the presence of glucose, GOx catalyzed the conversion of glucose to hydrogen peroxide (H2O2), which acted as a quencher for the Ru(bpy)32+/triethanolamine (TPA) system, reducing the ECL signal and enabling quantitative glucose analysis. The sensor exhibited a wide linear range from 10 μM to 7.0 mM and a limit of detection (LOD) of 1 μM (S/N = 3). Glucose detection in fetal bovine serum was realized. By replacing the enzyme type on the electrode surface, this sensing strategy holds the potential to provide a universal platform for the detection of different metabolites.

基于酶的固相电化学发光传感器,稳定,锚定发射器用于敏感的葡萄糖检测。
葡萄糖(Glu)检测作为一项基本的分析技术,在医学诊断、临床检验、生物分析和环境监测等方面有着广泛的应用。在这项工作中,通过在双极二氧化硅纳米通道阵列薄膜(bp-SNA)中稳定地固定ECL发射器,开发了一种固相电化学发光(ECL)酶传感器,实现了敏感的葡萄糖检测。该传感器采用电化学辅助自组装(EASA)方法,采用多种硅氧烷前驱体,快速修饰具有不同电荷性质的双层SNA氧化铟锡(ITO)电极表面。带负电荷的内层SNA (n-SNA)通过静电相互作用吸引带正电荷的ECL发射体三(2,2′-联吡啶基)钌(II) (Ru(bpy)32+),而带正电荷的外层SNA (p-SNA)则排斥它,形成一个屏障,稳定地有效地集中Ru(bpy)32+发射体。葡萄糖氧化酶(GOx)在p-SNA表面用醛修饰胺基后,共价固定,形成酶电极。在葡萄糖存在的情况下,GOx催化葡萄糖转化为过氧化氢(H2O2),过氧化氢作为Ru(bpy)32+/三乙醇胺(TPA)体系的猝灭剂,降低了ECL信号,使葡萄糖的定量分析成为可能。该传感器线性范围为10 μM ~ 7.0 mM,检出限(LOD)为1 μM (S/N = 3)。实现了胎牛血清中葡萄糖的检测。通过替换电极表面的酶类型,这种传感策略有可能为检测不同的代谢物提供一个通用的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biosensors-Basel
Biosensors-Basel Biochemistry, Genetics and Molecular Biology-Clinical Biochemistry
CiteScore
6.60
自引率
14.80%
发文量
983
审稿时长
11 weeks
期刊介绍: Biosensors (ISSN 2079-6374) provides an advanced forum for studies related to the science and technology of biosensors and biosensing. It publishes original research papers, comprehensive reviews and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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