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全密封纸质电化学发光平台,用于现场测定铅离子。

All-sealed paper-based electrochemiluminescence platform for on-site determination of lead ions.

机构信息

School of Chemistry and Chemical Engineering, 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. 2021 Nov 15;192:113524. doi: 10.1016/j.bios.2021.113524. Epub 2021 Jul 21.

Abstract

Lab-on-paper (LOP) devices are urgently required for the rapid development of point-of-care diagnoses and environmental assays. Herein, an all-sealed paper-based electrochemiluminescence (ECL) platform was developed to achieve lead ions (Pb) sensitive analysis via incorporating convenient plastic package technology. Benefiting from transparent plastic encapsulation, the sealed devices effectively avoided the interference of O. Meanwhile, myrica rubra-like Pt nanomaterials (MPNs) prepared by an economical and easy-to-operate ultrasound method were employed to catalyze HO decomposition. With the help of Pb-specific DNAzymes, the oligonucleotide probe functionalized via MPNs could be detached from the device in the presence of target, resulting in the reduced ECL intensity. Moreover, the combination of modified paper electrode with functional regions separated by multiple layers of wax enhanced the practicability of the LOP device for rapid detection. Under the optimal conditions, the all-sealed platform achieved wide linear relationship ranging from 0.01 nM to 0.05 μM with a low detection limit of 0.004 nM for sensitive detecting Pb. It is believed that this platform could provide a robust, simple and versatile strategy for sensitive determination of heavy metal ions, and be applied in on-site contamination analysis in the future.

摘要

用于即时诊断和环境检测的纸质实验室(Lab-on-paper,LOP)器件正在被迫切需要。在此,开发了一种全密封的基于纸的电致化学发光(ECL)平台,通过引入方便的塑料封装技术实现对铅离子(Pb)的灵敏分析。得益于透明塑料封装,密封器件有效地避免了 O 的干扰。同时,采用经济且易于操作的超声法制备杨梅状 Pt 纳米材料(MPNs),用于催化 HO 的分解。在 Pb 特异性 DNA 酶的帮助下,在存在靶标时,通过 MPNs 功能化的寡核苷酸探针可以从器件上脱离,导致 ECL 强度降低。此外,通过多层蜡分隔功能区域的修饰纸电极增强了 LOP 器件用于快速检测的实用性。在最佳条件下,全密封平台实现了从 0.01 nM 到 0.05 μM 的宽线性关系,检测 Pb 的低检测限为 0.004 nM。可以相信,该平台可以为重金属离子的灵敏测定提供一种稳健、简单和通用的策略,并有望在未来用于现场污染分析。

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