生物传感器
化学
检出限
电极
纳米技术
线性范围
胶体金
电化学
单排替反应
流离失所(心理学)
纳米颗粒
信号(编程语言)
动态范围
电子转移
组合化学
劈开
分析化学(期刊)
微流控
作者
Jiayi Hu,Lin Hao,Meiyu Chen,Yufan Zhang
标识
DOI:10.1021/acs.analchem.6c01194
摘要
The efficient and quantitative detection of miRNA-21 plays a critical role in early cancer diagnosis, as well as in the screening and treatment of early-stage infectious diseases. In this study, we developed an electrochemical biosensor for the detection of miRNA-21 in human serum samples. The sensor is constructed based on carboxyl-modified cobalt-doped nitrogen-doped carbon (Co-NC-COOH), a dual-output toehold-mediated strand displacement (TMSD) reaction, and gold nanoparticles (Au NPs) to achieve electrocatalytic signal amplification toward acetaminophen (AP). Co-NC-COOH possesses abundant active and catalytic sites, along with a porous surface morphology, which facilitates electron transfer and enhances the loading capacity of the capture probe (CP). In the presence of miRNA-21, the dual-output TMSD reaction is initiated, resulting in the release of a large amount of product strand (P). Subsequently, P hybridizes with the CP immobilized on the electrode surface, enabling the attachment of Au NPs to the electrode and thereby achieving significant electrochemical signal amplification. The results demonstrate that the proposed biosensor exhibits excellent analytical performance, including a wide linear detection range (0.1 fM-50 nM), an ultralow detection limit (63 aM), and satisfactory spike recovery rates (95.18%-103.59%). Moreover, the biosensor shows good stability and high specificity, providing a reliable platform for the precise quantification of miRNA-21 in human serum.
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