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基于二维纳米酶催化活性的靶诱导反屏蔽作用的无标记均相电化学检测 MicroRNA

Label-free homogeneous electrochemical detection of MicroRNA based on target-induced anti-shielding against the catalytic activity of two-dimension nanozyme.

机构信息

College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao, 266109, People's Republic of China.

College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University, Qingdao, 266109, People's Republic of China.

出版信息

Biosens Bioelectron. 2021 Jan 1;171:112707. doi: 10.1016/j.bios.2020.112707. Epub 2020 Oct 8.

DOI:10.1016/j.bios.2020.112707
PMID:33049565
Abstract

In traditional homogeneous electrochemical sensing system, methylene blue was stricken with nonspecific intercalation and weak stability, inevitably distorting the diagnosis results. Given the unique catalytic activity of oxidase- and peroxidase-like nanozymes, it is interesting to develop a nanozyme-based homogeneous electrochemical biosensor. Whereas, the preparation of nanozymes with dual enzyme-like activities and two dimensional (2D) morphology is a great challenge. Herein, a soft template-directed wet chemical approach was proposed for preparation of 2D MnO nanoflakes, in which the morphology can be easily tuned by the template dosage. Interestingly, not only the oxidase-like activity was discovered, but 2D MnO nanoflakes also display a significant peroxidase-like activity. Noticeably, 2D MnO nanoflakes exhibit superior response to single stranded deoxyribonucleic acid (ssDNA) over double stranded DNA in the aspect of binding and catalytic activity, which triggers a highly sensitive homogeneous electrochemical detection of microRNA. This study about finding nanozymes with dual enzyme-like activities and ssDNA with inhibiting effect will set up a new avenue to extend the application range of nanozymes and throws a new light on the development of higher-performance electrochemical biosensors.

摘要

在传统的均相电化学传感系统中,亚甲蓝受到非特异性嵌入和弱稳定性的影响,不可避免地会扭曲诊断结果。鉴于氧化酶和过氧化物酶样纳米酶的独特催化活性,开发基于纳米酶的均相电化学生物传感器很有趣。然而,制备具有双酶样活性和二维(2D)形态的纳米酶是一个巨大的挑战。本文提出了一种软模板导向的湿化学方法来制备 2D MnO 纳米片,其中通过模板剂量很容易调节形貌。有趣的是,MnO 纳米片不仅发现了氧化酶样活性,而且还显示出显著的过氧化物酶样活性。值得注意的是,2D MnO 纳米片在结合和催化活性方面对单链脱氧核糖核酸(ssDNA)表现出优于双链 DNA 的优异响应,从而引发了对 microRNA 的高灵敏度均相电化学检测。这项关于发现具有双酶样活性和抑制作用的 ssDNA 的纳米酶的研究将为扩展纳米酶的应用范围开辟新途径,并为开发更高性能的电化学生物传感器提供新的思路。

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