首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Fenton's reagent-tuned DNA-templated fluorescent silver nanoclusters as a versatile fluorescence probe and logic device
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Fenton's reagent-tuned DNA-templated fluorescent silver nanoclusters as a versatile fluorescence probe and logic device

机译:Fenton试剂调节的DNA模板荧光银纳米簇可作为多功能荧光探针和逻辑装置

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摘要

A label-free strategy based on the Fenton reaction with DNA-templated silver nanoclusters (DNA-Ag NCs) as a probe is demonstrated for the sequential detection of Cu ~(2+), ascorbic acid (AA) and H _2O _2. Cu ~(2+) causes a structural change of the DNA template in DNA-Ag NCs to resist the environmental quenching and emit stronger fluorescence. The addition of AA in the presence of Cu ~(2+) results in a further fluorescence increase of the DNA-Ag NCs. Interestingly, an even higher fluorescence enhancement is recorded by introducing Cu ~(2+) into the DNA-Ag NCs-AA probing system. The fluorescence turn-on probe offers detection limits of 3 nM for Cu ~(2+) and 7 nM for AA. Thereafter, the addition of H _2O _2 generates hydroxyl radicals from the Fenton reaction, which induces cleavage of the DNA template, leading to fluorescence quenching of the DNA-Ag NCs. This facilitates H _2O _2 detection. Moreover, based on the DNA-templated fluorescent silver nanoclusters and Fenton reaction, a multiple logic gate system, including AND and a three-input logic gate, is constructed, with Cu ~(2+), AA and H _2O _2 as inputs, and the fluorescence intensity of the DNA-Ag NCs probe as output.
机译:基于Fenton反应,以DNA模板的银纳米团簇(DNA-Ag NCs)为探针,证明了一种无标记策略,用于顺序检测Cu〜(2+),抗坏血酸(AA)和H _2O _2。 Cu〜(2+)引起DNA-Ag NCs中DNA模板的结构变化,从而抵抗环境猝灭并发出更强的荧光。在Cu〜(2+)存在下添加AA会导致DNA-Ag NCs的进一步荧光增强。有趣的是,通过将Cu〜(2+)引入DNA-Ag NCs-AA探测系统中,记录到了更高的荧光增强。荧光开启探针对Cu〜(2+)的检测限为3 nM,对AA的检测限为7 nM。此后,H _2O _2的添加会从Fenton反应中产生羟基自由基,从而诱导DNA模板的裂解,从而导致DNA-Ag NCs的荧光猝灭。这有助于H _2O _2的检测。此外,基于DNA模板荧光银纳米簇和Fenton反应,以Cu〜(2 +),AA和H _2O _2为输入,构建了一个包含AND和三输入逻辑门的多逻辑门系统, DNA-Ag NCs探针的荧光强度作为输出。

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