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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 >Discovery of the unique self-assembly behavior of terminal suckers-contained dsDNA onto GNP and novel 'light-up' colorimetric assay of nucleic acids
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Discovery of the unique self-assembly behavior of terminal suckers-contained dsDNA onto GNP and novel 'light-up' colorimetric assay of nucleic acids

机译:发现含末端吸盘的dsDNA在GNP上的独特自组装行为以及核酸的新型“发光”比色测定

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摘要

Noble metal nanoparticles are currently of great interest because of their unique optical properties and potential applications in disease diagnostics and cancer treatment In the present work, a discovery was reported that dsDNA with terminal thiols at its two ends could lie easily flat onto the gold nanoparticle (GNP) surface rather than cross linked different GNPs, indicating an unique self-assembly behavior of newly-designed molecules on GNPs. This could intensively stabilize gold nanoparticles against aggregation even at a high salt concentration. On the basis of this discovery, a novel light-up colorimetric sensing strategy was developed for the detection of p53 gene by combining with the cyclical nucleic acid strand-displacement polymerization (CNDP). For the described colorimetric system, GNPs require no any surface functionalization, and target recognition reaction and CNDP amplification could be conducted under the optimized conditions to achieve a high efficiency. The high detection sensitivity and desirable selectivity are achieved, and the potential practical application was demonstrated. Besides, this sensing system can function in a wide range of salts, making it a suitable platform to cooperate with many biological processes. (C) 2014 Elsevier B.V. All rights reserved.
机译:贵金属纳米粒子由于其独特的光学性质以及在疾病诊断和癌症治疗中的潜在应用而受到了广泛关注。在本研究中,发现了一个发现,其两端带有末端硫醇的dsDNA可以轻松地平放在金纳米粒子上GNP)表面,而不是交联不同的GNP,这表明新设计的分子在GNP上具有独特的自组装行为。即使在高盐浓度下,这也可以使金纳米颗粒稳定地抗聚集。在此发现的基础上,结合循环核酸链置换聚合(CNDP),开发了一种新型的发光比色传感策略,用于检测p53基因。对于所描述的比色系统,GNP不需要任何表面功能化,可以在优化条件下进行目标识别反应和CNDP扩增,以实现高效率。实现了高检测灵敏度和理想的选择性,并证明了其潜在的实际应用。此外,该传感系统可以在各种盐中起作用,使其成为与许多生物过程协作的合适平台。 (C)2014 Elsevier B.V.保留所有权利。

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