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Design aspects of bright red emissive silver nanoclusters/DNA probes for MicroRNA detection

机译:用于MicroRNA检测的亮红色发光银纳米簇/ DNA探针的设计方面

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The influence of the nucleic acid secondary structure on the fast (1 h) formation of bright red emissive silver nanoclusters (AgNCs) in a DNA sequence (DNA-12nt-RED-160), designed for the detection of a microRNA sequence (RNA-miR160), was investigated. The findings show that especially the propensity for mismatch self-dimer formation of the DNA probes can be a good indicator for the creation and stabilization of red emissive AgNCs. Also, the role of the thermal stability of the secondary DNA structures (mismatch self-dimer and hairpin monomers) and the observed AgNC red emission intensity were investigated. These findings can form the basis for a rationale to design new red emissive AgNC-based probes. As an example, a bright red emissive AgNC-based DNA probe was designed for RNA-miR172 detection. The latter opens the possibility to create a variety of AgNC-based DNA probes for the specific detection of plant and animal miRNAs.
机译:核酸二级结构对DNA序列(DNA-12nt-RED-160)中亮红色发光银纳米簇(AgNC)快速形成(1 h)的影响,该序列设计用于检测microRNA序列(RNA- miR160)。这些发现表明,特别是DNA探针不匹配的自我二聚体形成的倾向,可以很好地指示红色发光AgNC的产生和稳定。此外,还研究了二级DNA结构(不匹配的自身二聚体和发夹单体)的热稳定性的作用以及观察到的AgNC红色发射强度。这些发现可为设计新的基于AgNC的红色发光探针的原理奠定基础。例如,设计了基于AgNC的亮红色发光DNA探针用于RNA-miR172检测。后者为创建各种基于AgNC的DNA探针以特异性检测植物和动物miRNA提供了可能性。

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