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基于纸芯片集成器件的铅离子比色和电致化学发光双模传感检测

Colorimetric and Electrochemiluminescence Dual-Mode Sensing of Lead Ion Based on Integrated Lab-on-Paper Device.

机构信息

School of Chemistry and Chemical Engineering, Institute for Advanced Interdisciplinary Research and ‡Shandong Provincial Key Laboratory of Preparation and Measurement of Building Materials, University of Jinan , Jinan 250022, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Jan 31;10(4):3431-3440. doi: 10.1021/acsami.7b18542. Epub 2018 Jan 22.

Abstract

A highly selective two-point separation strategy was designed based on a cross-like all-in-one lab-on-paper analytical device. The stable and cleavable enzyme-coated reduced graphene oxide (rGO)-PdAu probe was fabricated as the signal reporter to enable the visualization and electrochemiluminescence (ECL) dual-mode sensing of Pb. Concretely, the experimental workflow consists of the following process: (i) fabrication of the lab-on-paper device and growth of Au nanoparticles on ECL detection zone, (ii) immobilization of Pb-specific DNAzyme, and (iii) hybridization between DNAzyme and rGO-PdAu-glucose oxidase (GOx) labeled oligonucleotide to form the double-stranded DNA. Upon addition of Pb into the prepared system, the double-helix structure of the DNA was destroyed, resulting in the release of cleaved rGO-PdAu-GOx probe to visualization bar to promote the effective oxidation and color change of 3,3',5,5'-tetramethylbenzidine. As a consequence, the color change can be recognized by naked eye, meanwhile GOx on an uncleaved signal probe can oxidize glucose along with the HO production. As a co-reaction reagent for luminol ECL system, the concentration of HO is proportional to the ECL intensity, which constitutes a new mechanism for colorimetric and ECL dual mode to detect Pb. With the method developed here, the concentration of Pb could be easily determined by the naked eye within a linear range from 5 to 2000 nM, as well as by monitoring the decreased ECL intensity of luminol in a linear range of 0.5-2000 nM. This work not only constructs a simple and versatile platform for on-site visible monitoring of Pb in tap water and river water but also furnishes a strategy for designing a dual-mode sensing toward different heavy metal ions based on specific DNAzyme in the fields of environmental monitoring-related technologies.

摘要

基于十字型一体式纸基分析器件,设计了一种高选择性的两点分离策略。将稳定且可切割的酶涂层还原氧化石墨烯(rGO)-PdAu 探针作为信号报告物,实现了 Pb 的可视化和电化学发光(ECL)双模传感。具体来说,实验流程包括以下过程:(i)纸基器件的制作和 ECL 检测区上 Au 纳米粒子的生长,(ii)Pb 特异性 DNAzyme 的固定,以及(iii)DNAzyme 与 rGO-PdAu-葡萄糖氧化酶(GOx)标记寡核苷酸的杂交,形成双链 DNA。将 Pb 加入到制备的体系中后,DNA 的双螺旋结构被破坏,导致切割的 rGO-PdAu-GOx 探针释放到可视化条上,以促进 3,3',5,5'-四甲基联苯胺的有效氧化和颜色变化。结果,颜色变化可以用肉眼识别,同时,未切割信号探针上的 GOx 可以在 HO 产生的同时氧化葡萄糖。作为鲁米诺 ECL 体系的共反应试剂,HO 的浓度与 ECL 强度成正比,这构成了比色和 ECL 双模检测 Pb 的新机制。利用该方法,通过肉眼可以在 5 至 2000 nM 的线性范围内轻松确定 Pb 的浓度,也可以通过监测鲁米诺的 ECL 强度在 0.5-2000 nM 的线性范围内的降低来确定 Pb 的浓度。该工作不仅构建了一个简单而通用的平台,用于现场监测自来水中的 Pb,还为基于特定 DNAzyme 设计针对不同重金属离子的双模传感策略提供了思路,该策略可应用于环境监测相关技术领域。

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