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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A three-dimensional DNA nanomachine with target recycling amplification technology and multiple electrochemiluminescence resonance energy transfer for sensitive microRNA-141 detection
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A three-dimensional DNA nanomachine with target recycling amplification technology and multiple electrochemiluminescence resonance energy transfer for sensitive microRNA-141 detection

机译:具有目标再循环扩增技术的三维DNA纳米机和用于敏感MicroRNA-141检测的多种电化学发光共振能量转移

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摘要

An electrochemiluminescence (ECL) three-dimensional (3D) DNA nanomachine is developed for microRNA-141 (miRNA-141) detection by coupling Pb2+ dependent DNAzyme assisted target recycling amplification technology with multiple ECL resonance energy transfer (ECL-RET) system. Firstly, Pb2+ dependent DNAzyme is formed by three single strand DNA (ssDNA): A1, A2 and the target miRNA-141. In the presence of Pb2+, the specific recognition site of the DNAzyme is cleaved and a large number of secondary targets (A3) are released. Secondly, the 3D DNA nanomachine consists of four ssDNA: H1, H2, H3 and the probe (two ends are labeled with alexa fluor (AF) and a nanocomposite (PtNCs@Ru(dcbpy)(3)(2+) which is prepared by polyethyleneimine platinum nanoclusters and tris(4,4'-dicarboxylicacid-2,2'-bipyridyl) ruthenium(II) dichloride). Then, the 3D DNA nanomachine is assembled on the gold nanoparticles modified glassy carbon electrode. Afterwards, A3 is employed to hybridize with the probe, triggering the movement of the nanomachine and forming the multiple ECL-RET system. In this system, AF, serves as an effective energy transfer donor, which can transfer energy to PtNCs and Ru(dcbpy)(3)(2+) directly. Meanwhile, PtNCs, both as the acceptor and donor, can accept energy from AF and transfer it to Ru(dcbpy)(3)(2+). As a result, The biosensor achieves enhanced ECL efficiency, which is 1.78 times that of the classic tris(2,2'-bipyridyl)ruthenium(II) dichloride (Ru(bpy)(3)(2+) and exhibits good responses to miRNA-141 in the linear range from 10 aM to 100 nM with a detection limit of 3.3 aM. Also, the obtained biosensor can be employed to detect miRNA-141 in human serum samples, which will be of great significance in bioanalysis.
机译:通过在具有多个ECL共振能量转移(ECL-RET)系统的MICRORNA-141(miRNA-141)检测中,开发了用于MicroRNA-141(miRNA-141)检测的电化学发光(ECL)三维(3D)DNA纳米载荷。首先,Pb2 +依赖性DNazyme由三个单链DNA(SSDNA):A1,A2和靶MiRNA-141形成。在PB2 +的存在下,释放裂解DNAzyme的特异性识别位点,并且释放大量的次要靶标(A3)。其次,3D DNA纳米载荷由四个SSDNA:H1,H 2,H 3和探针组成(两端用Alexa Fluor(AF)和纳米复合物(PTNCS @ Ru(DCBPY)(3)(2+)制备通过聚乙烯亚胺铂纳米团簇和Tris(4,4'-二羧酸-2,2'-双吡啶基)钌(II)二氯化物)。然后,在金纳米粒子改性玻碳电极上组装3D DNA纳米机。然后,采用A3与探针杂交,触发纳米机器的运动并形成多个ECL-RET系统。在该系统中,AF,用作有效的能量转移供体,可以将能量转移到PTNC和Ru(DCBPY)(3)(3)( 2+)直接。同时,PTNC,无论是受体和供体,都可以接受来自AF的能量并将其转移到Ru(DCBPY)(3)(2+)。因此,生物传感器实现了增强的ECL效率,即1.78倍的经典三(2,2'-双吡啶基)钌(II)二氯(Ru(BPY)(3)(2+),并对miRNA-141表现出良好的反应e线性范围从上午10点到100nm,检测限为3.3as。而且,可以使用所得生物传感器检测人血清样品中的miRNA-141,这对生物分析具有重要意义。

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