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Double stranded DNA-templated copper nanoclusters as a novel fluorescent probe for label-free detection of rutin

机译:双链DNA模板铜纳米簇作为无标记检测芦丁的新型荧光探针

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In this study, we developed a simple, sensitive, low-cost and label-free method to detect rutin by using double-stranded DNA-templated copper nanoclusters (dsDNA-CuNCs) as a fluorescent probe. The dsDNA-template can facilitate the formation of highly fluorescent CuNCs with a maximum emission wavelength of 575 nm. In the dsDNA-CuNC fluorescent probe, rutin was intercalated into the structure of dsDNA via hydrogen bonding and electrostatic interactions. The fluorescence of dsDNA-CuNCs was quenched considerably due to the electron transfer from CuNCs to rutin. This decrease in the fluorescence intensity of dsDNA-CuNCs can be used to monitor the concentration of rutin from 0.6 to 400 μM with a detection limit of 0.12 μM (S/N = 3). Compared with the previous reports, this method does not require any complex DNA sequence design, fluorescent dye label and sophisticated experimental techniques. Moreover, the proposed sensing system could be applicable for the detection of rutin in pharmaceutical samples.
机译:在这项研究中,我们开发了一种简单,灵敏,低成本且无标签的方法,通过使用双链DNA模板铜纳米簇(dsDNA-CuNCs)作为荧光探针来检测芦丁。 dsDNA模板可以促进最大发射波长为575 nm的高荧光CuNC的形成。在dsDNA-CuNC荧光探针中,芦丁通过氢键和静电相互作用插入dsDNA的结构中。 dsDNA-CuNCs的荧光由于电子从CuNCs转移到芦丁而被大量淬灭。 dsDNA-CuNCs荧光强度的这种降低可用于监测芦丁浓度从0.6到400μM,检测极限为0.12μM(S / N = 3)。与以前的报告相比,该方法不需要任何复杂的DNA序列设计,荧光染料标记和复杂的实验技术。而且,所提出的传感系统可以适用于药物样品中芦丁的检测。

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