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Poly-adenine regulated DNA density on AuNPs to construct efficient DNA walker for microRNA-21 detection

化学 生物传感器 DNA 核酸外切酶 III 荧光团 杂交探针 胶体金 A-DNA 适体 分子信标 生物物理学 分子生物学 寡核苷酸 纳米技术 纳米颗粒 生物化学 荧光 基因 光学 材料科学 物理 大肠杆菌 生物
作者
Dan Li,Zewei Luo,Huifang An,Enlai Yang,Mengfan Wu,Zhijun Huang,Yixiang Duan
出处
期刊:Talanta [Elsevier BV]
卷期号:217: 121056-121056 被引量:37
标识
DOI:10.1016/j.talanta.2020.121056
摘要

DNA-modified gold nanoparticles (AuNPs) are useful nanomaterials for detecting multiple molecules. However, their performance is greatly dependent on the density of probe DNA on the surface of AuNPs. Here, we used Poly-adenine (PolyA) to regulate the surface density of probe DNA to achieve a highly efficient DNA walking biosensor system to detection miRNA-21. The movement track of the biosensor system consists of PolyA-DNA probe was connected to AuNPs, and exonuclease III (Exo III) acted as a motor driving the walker movement to achieve signal amplification. By optimizing the length of PolyA, the surface density of probe DNA was changed, thereby affecting the target binding and enzymatic processing of the bound probes, which ultimately enhanced the sensitivity and reduced timeliness of the DNA walker. Furthermore, the designed PolyA-DNA probe exhibits an outstanding sensitivity, due to the effect of density regulation, which is 7.9 times and 11.1 times lower than those of the SH-DNA and the free-DNA, respectively. In addition, the hairpin structure of DNA probe locates fluorophore at a zone adjacent to AuNPs surface, which reduces the background signal by 1.1 times compared with traditional straight probe. In this work, the biosensor system shows a high selectivity towards miRNA-21. Moreover, the biosensor system has been demonstrated to be potentially useful for the miRNA-21 detection in human serum with the recoveries of 93.2%–110.0% and has high repeatability. Considering these advantages, this PolyA-regulated DNA walking biosensor system has great potential as a routine tool for miRNA detection and has wide applications in the field of biomedical analysis.
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