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Highly sensitive and selective fluorescence detection of Hg2+ based on turn-on aptamer DNA silver nanoclusters

机译:基于适体DNA银纳米簇的Hg 2 + 的高灵敏度和选择性荧光检测

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摘要

A novel turn-on Hg2+ sensor was constructed based on fluorescent C–Hg2+-aptamer DNA-stabilized Ag nanoclusters (DNA–AgNCs), and was used to determine the concentration of Hg2+ over the range 2–18 nM with a detection limit as low as 0.25 nM. The sensing assay relied on a target-induced conformational transition of Hg2+-aptamer DNA. The conformational change of Hg2+-aptamer DNA from a single strand to a hairpin DNA due to the formation of a T–Hg2+–T complex in the presence of Hg2+ made the two darkish DNA–AgNCs approach each other closely and then enhanced the fluorescence of the AgNCs, which enabled the sensitive and specific detection of Hg2+. The proposed sensor was found to be easy to use, and allowed for the sensitive, selective, and turn-on detection of Hg2+. Furthermore, this approach has also been successfully applied to the detection of Hg2+ in real water samples, so this sensor may find application in monitoring Hg2+ in environmental samples.
机译:基于荧光C–Hg 2 + -适配体DNA构建了新型的Hg 2 + 传感器稳定的Ag纳米簇(DNA–AgNCs),用于测定2–18 nM范围内的Hg 2 + 的浓度,检出限低至0.25 nM。感测法依赖于目标诱导的Hg 2 + -适体DNA的构象转变。 Hg 2 + -适体DNA的构象变化是由于T–Hg 2+ < Hg 2 + 存在下的/ sup> –T复合物使两个较暗的DNA–AgNC彼此接近,然后增强了AgNC的荧光,从而可以灵敏地检测Hg 2 + 。发现所建议的传感器易于使用,并且可以对Hg 2 + 进行灵敏,选择性和开启的检测。此外,该方法也已成功应用于实际水样中Hg 2 + 的检测,因此该传感器可用于监测Hg 在环境样本中为2 +

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