Mesoporous Silica Containers and Programmed Catalytic Hairpin Assembly/Hybridization Chain Reaction Based Electrochemical Sensing Platform for MicroRNA Ultrasensitive Detection with Low Background

化学 检出限 介孔二氧化硅 生物分析 亚甲蓝 组合化学 DNA 分析物 选择性 纳米技术 电极 介孔材料 催化作用 电化学 色谱法 材料科学 有机化学 生物化学 光催化 物理化学
作者
Hong Cheng,Wei Li,Shuangdi Duan,Jiaxin Peng,Jinquan Liu,Wenjie Ma,Huizhen Wang,Xiaoxiao He,Kemin Wang
出处
期刊:Analytical Chemistry [American Chemical Society]
卷期号:91 (16): 10672-10678 被引量:78
标识
DOI:10.1021/acs.analchem.9b01947
摘要

In this work, based on mesoporous silica containers (MSNs) with the programmed enzyme-free DNA assembly amplification of catalytic hairpin assembly (CHA) and hybridization chain reaction (HCR), an ultrasensitive electrochemical sensing platform with low background is developed for the detection of microRNA (miRNA). Herein, the electrochemical reporter methylene blue (MB) was sealed in the pores of MSNs by the double-stranded DNA (dsDNA) gate of hairpin DNA H1 and anchor DNA. In the absence of target, neither the CHA nor the HCR process happened, which enabled a low background. After target was added, DNA H1 was displaced from the MSNs surface and participated in the CHA process with the assistance of hairpin DNA H2, which accelerated the release of MB from the MSNs pore. Meanwhile, the CHA products H1–H2 were hybridized with the capture probes (SH–CP) on the electrode surface, which further initiated the HCR process. The released MB from the MSNs will effectively intercalate into long dsDNA polymers of HCR products, resulting in a significant electrochemical response. Taking miRNA-21 as the model target, the proposed sensing platform achieves a satisfactory detection limit down to 0.037 fM, which is lower than that of electrochemical assay with amplification methods. In addition, the strategy shows good selectivity against other miRNAs and is capable in practical analytes. Benefitting from the features of being label-free and enzyme-free and having low background, high sensitivity, and selectivity, this strategy shows great potential in bioanalysis and clinical diagnostics.
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