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首页> 外文期刊>Analytica chimica acta >A label-free colorimetric platform for DNA via target-catalyzed hairpin assembly and the peroxidase-like catalytic of graphene/Au-NPs hybrids
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A label-free colorimetric platform for DNA via target-catalyzed hairpin assembly and the peroxidase-like catalytic of graphene/Au-NPs hybrids

机译:通过靶标催化的发夹装配和石墨烯/ Au-NPs杂化物的过氧化物酶样催化作用,为DNA提供无标记的比色平台

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A target-catalyzed hairpin assembly (CHA) and graphene/Au-NPs hybrids-based platform has been developed for the determination of DNA. This new sensor not only avoided any labeling but also reduced the background signal. In the absence of target, the assembly of H1 and H2 couldn't be triggered. The catalytic activity of graphene/Au-NPs hybrids was inhibited by adsorption of H1 and H2, leading to the inactive hybrids unable to catalyze the oxidation reaction of 3,3',5,5'-tetramethylbenzidine (TMB). However, with the addition of target DNA, the target-catalyzed hairpin assembly was initiated and produced plenty of H1-H2 duplex, which had a weak binding affinity with the graphene/Au-NPs. Thus, the protected interface of graphene/Au-NPs hybrids became active and catalyzed the oxidation reaction of TMB accompanied with a colorless to-blue color change. This approach exhibited good sensitivity and specificity for target DNA with a detection limit of 5.74 x 10(-11) M, and realized the assay of target DNA in human serum samples. Besides, this sensor could be further expanded to detect viruses or proteins by adapting the corresponding aptamers, showing great potential in biochemical detections. (C) 2015 Elsevier B.V. All rights reserved.
机译:已开发出一种基于目标催化的发夹装配(CHA)和基于石墨烯/ Au-NPs杂化物的平台,用于测定DNA。这种新的传感器不仅避免了任何标记,而且减少了背景信号。在没有目标的情况下,无法触发H1和H2的装配。 H1和H2的吸附抑制了石墨烯/ Au-NPs杂化物的催化活性,导致无活性的杂化物无法催化3,3',5,5'-四甲基联苯胺(TMB)的氧化反应。然而,通过添加目标DNA,启动了目标催化的发夹装配并产生了大量的H1-H2双链体,该双链与石墨烯/ Au-NP的结合亲和力很弱。因此,石墨烯/ Au-NPs杂化物的受保护界面变得活跃,并催化了TMB的氧化反应,伴随着无色至蓝色的变化。该方法对目标DNA表现出良好的敏感性和特异性,检测极限为5.74 x 10(-11)M,并实现了人血清样品中目标DNA的测定。此外,该传感器可通过适应相应的适体而进一步扩展以检测病毒或蛋白质,在生化检测中显示出巨大的潜力。 (C)2015 Elsevier B.V.保留所有权利。

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