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一种基于电活性银纳米簇的富含胸腺嘧啶核酸增强型电化学平台用于微小RNA检测。

A T-rich nucleic acid-enhanced electrochemical platform based on electroactive silver nanoclusters for miRNA detection.

作者信息

Zhao Yan, Lu Changtong, Zhao Xian-En, Kong Weiheng, Zhu Shuyun, Qu Fengli

机构信息

College of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, 273165, Shandong, China.

College of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, 273165, Shandong, China.

出版信息

Biosens Bioelectron. 2022 Jul 15;208:114215. doi: 10.1016/j.bios.2022.114215. Epub 2022 Mar 23.

Abstract

DNA-templated silver nanoclusters (DNA/AgNCs) serve as a useful electrochemical sensing nanomaterial characterized by excellent electroactivity and good stability, while the effect of surrounding nucleotides on their electroactivity has not been studied. Herein, we validated a nucleotide-assisted enhancement mechanism of the DNA/AgNCs electroactivity caused by T-rich nucleic acid sequences in the vicinity of AgNCs. Based on the T-rich nucleic acid-enhanced AgNCs (NAE-AgNCs) combined with hybrid chain reaction (HCR), a novel signal-enhanced electrochemical biosensing platform was established for the ultrasensitive detection of miRNA. In the presence of target miRNA-155, HCR could be triggered to generate duplex strands containing both numerous AgNC synthesis sites and T-rich overhang strands upon the electrode. With the electrodeposition of adjacent AgNCs on the electrode, the larger oxidation potential of T-rich nucleic acid leaded to stronger electron-accepting capacity, which could contribute to increased current responses. The T-rich NAE HCR electrochemical strategy resulted in a detection limit of 0.39 fM for miRNA-155 detection, one order of magnitude lower than conventional HCR-based electrochemical sensors. This T-rich nucleic acid-assisted enhancement mechanism provided a new direction to construct highly sensitive, label-free, low-cost, and simple sensing platforms for applications in biomarker assays and clinic diagnosis.

摘要

DNA模板化银纳米簇(DNA/AgNCs)是一种有用的电化学传感纳米材料,具有优异的电活性和良好的稳定性,但其周围核苷酸对其电活性的影响尚未得到研究。在此,我们验证了由AgNCs附近富含T的核酸序列引起的DNA/AgNCs电活性的核苷酸辅助增强机制。基于富含T的核酸增强的AgNCs(NAE-AgNCs)与杂交链式反应(HCR)相结合,建立了一种用于超灵敏检测miRNA的新型信号增强电化学生物传感平台。在目标miRNA-155存在的情况下,HCR可被触发,在电极上生成既包含众多AgNC合成位点又包含富含T的突出链的双链。随着相邻的AgNCs在电极上的电沉积,富含T的核酸较大的氧化电位导致更强的电子接受能力,这有助于增加电流响应。富含T的NAE HCR电化学策略对miRNA-155检测的检测限为0.39 fM,比传统的基于HCR的电化学传感器低一个数量级。这种富含T的核酸辅助增强机制为构建高灵敏度、无标记、低成本且简单的传感平台提供了新方向,可应用于生物标志物检测和临床诊断。

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