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DNA-Ag nanoclusters as fluorescence probe for turn-on aptamer sensor of small molecules

机译:DNA-Ag纳米簇作为小分子开启适体传感器的荧光探针

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As promising substitutes for organic dyes and quantum dots, few-atom fluorescent silver nanoclusters (Ag NCs) have recently gained much attention in a wide range from cellular imaging to chemical/biological detection applications owing to their ultrasmall size (<2nm), excellent photostability, good biocompatibility and water solubility. Herein, we design an aptamer, guanine-rich (G-rich) DNA and Ag NCs nanocomplex to investigate its ability for the detection of small molecules. The design contains two DNA strands which are both chimeric conjugates of the DNA aptamer sequence fragment and G-rich sequence fragment. Using cocaine as a model molecule, the two DNA strands are in free state if there is no cocaine present, and the formed Ag NCs through the reduction of Ag~+ by NaBH_4 show weak fluorescence emission. In the presence of cocaine, however, the two aptamer fragments bind cocaine, which in turn puts the two G-rich sequence fragments in proximity and the fluorescent intensity of DNA-Ag NCs enhances greatly. As a result, DNA-Ag NCs are demonstrated as a novel, cost-effective and turn-on fluorescent probe for the analysis of cocaine, with a detection limit of 0.1μM. Besides, successful detection of adenosine triphosphate (ATP) with detection limit of 0.2μM demonstrates its potential to be a general method.
机译:作为有机染料和量子点的有前途的替代品,由于其超小的尺寸(<2nm),出色的光稳定性,很少有原子的荧光银纳米团簇(Ag NCs)最近在细胞成像到化学/生物检测应用领域引起了广泛关注。 ,良好的生物相容性和水溶性。在这里,我们设计了一种适体,鸟嘌呤(G)丰富的DNA和Ag NCs纳米复合物,以研究其检测小分子的能力。该设计包含两条DNA链,它们都是DNA适体序列片段和富含G的序列片段的嵌合缀合物。以可卡因为模型分子,如果不存在可卡因,则两条DNA链处于自由状态,并且通过NaBH_4还原Ag〜+形成的Ag NCs发出的荧光较弱。然而,在存在可卡因的情况下,两个适体片段结合可卡因,这又使两个富含G的序列片段接近,DNA-Ag NCs的荧光强度大大提高。结果,DNA-Ag NCs被证明是一种新颖,具有成本效益且可开启的荧光探针,可分析可卡因,检出限为0.1μM。此外,成功检测出检出限为0.2μM的三磷酸腺苷(ATP)证明了其作为通用方法的潜力。

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