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基于纸的封闭 Au-Bipolar 电极电化学发光传感平台用于检测 miRNA-155。

Paper-based closed Au-Bipolar electrode electrochemiluminescence sensing platform for the detection of miRNA-155.

机构信息

Collaborative Innovation Center of Technology and Equipment for Biological Diagnosis and Therapy in Universities of Shandong, Institute for Advanced Interdisciplinary Research, University of Jinan, Jinan, 250022, PR China.

School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, PR China.

出版信息

Biosens Bioelectron. 2020 Feb 15;150:111917. doi: 10.1016/j.bios.2019.111917. Epub 2019 Nov 23.

Abstract

This paper introduces a paper-based closed Au-bipolar electrode (BPE) biosensing system for the rapid and sensitive electrochemiluminescence (ECL) detection of miRNA-155. This microfluidic paper-based sensing platform is formed by wax-printing technology, screen printing method and in-situ Au nanoparticles (NPs) growth to form hydrophilic cells, hydrophobic boundaries, water proof electronic bridge, driving electrode regions and bipolar electrode regions. For rapid and sensitive detection, the cathode of bipolar electrode was modified with the prepared DNA (S1)-AuPd NPs by hybridization chain reaction, in which the target could initiate multiple cycles reaction to load more AuPd NPs which catalyzed HO reduction. In addition, a classical ECL system tris (2,2'-bipyridine) ruthenium (II)- tripropylamine (Ru(bpy)/TPrA) exists at the anode of the bipolar electrode. Due to the charge balance between the anode and the cathode of BPE, the ECL signal response of Ru(bpy)/TPrA system was enhanced in the reporting cell. The intensity of ECL was quantitatively correlated with the concentration of miRNA-155 in the range of 1 pM-10 μM with the detection limit 0.67 pM. Moreover, this method paves a novel way for highly sensitive detection of miRNA-155 in clinical application.

摘要

本文介绍了一种基于纸的闭环形金双极电极(BPE)生物传感系统,用于快速灵敏地电化学发光(ECL)检测 miRNA-155。该微流控纸基传感平台通过蜡印技术、丝网印刷方法和原位 Au 纳米粒子(NPs)生长形成亲水单元、疏水边界、防水电子桥、驱动电极区域和双极电极区域。为了实现快速灵敏的检测,双极电极的阴极通过杂交链式反应修饰了制备的 DNA(S1)-AuPd NPs,其中靶标可以引发多个循环反应,从而加载更多的 AuPd NPs,从而催化 HO 还原。此外,在双极电极的阳极存在经典的 ECL 体系三(2,2'-联吡啶)钌(II)-三丙胺(Ru(bpy)/TPrA)。由于 BPE 的阳极和阴极之间的电荷平衡,在报告单元中增强了 Ru(bpy)/TPrA 体系的 ECL 信号响应。ECL 的强度与 miRNA-155 的浓度在 1 pM-10 μM 的范围内呈定量相关,检测限为 0.67 pM。此外,该方法为临床应用中 miRNA-155 的高灵敏度检测开辟了一条新途径。

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