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Structural Influence on the Post-Clustering Stability of DNA/AgNCs Fluorescence

机译:结构对DNA / AgNCs荧光后簇稳定性的影响

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摘要

DNA-encapsulated Silver Nanoclusters (DNA/AgNCs) based sensors have gained increasing attention in past years due to their diverse applications in bioimaging, biosensing, and enzymatic assays. Given the potential of DNA/AgNCs for practical applications, the systematic studies of the fluorescent stability over an extended period is necessary. However, the correlation between nucleic acid properties and the long-term stability of DNA/AgNCs is less known. With locking-to-unlocking sensors, in which the secondary structure of DNA template is standardized, we investigated the correlation between the DNA structure and the fluorescence stability of AgNCs. Post-synthesis of DNA/AgNCs, the fluorescence, and structures of templates were monitored over three weeks. By combining the fluorescence spectroscopy with the in-gel fluorescent assay, we found that AgNCs encapsulated by dimer-structured DNA/AgNCs templates were more stable than those of hairpin-structured DNA/AgNCs templates. While the orange fluorescence from the dimer templates increased over three weeks, the red fluorescence from the hairpin templates was diminished by >80% within two days at room temperature. Further tests revealed that hairpin-encapsulated red-emissive AgNCs is more sensitive to oxidation by atmospheric oxygen compared to dimer encapsulated orange AgNCs. Our observations may provide an important clue in encapsulating photophysically more stable AgNCs by tuning the DNA secondary structures. The proposed strategy here can be essential for pragmatic applications of DNA/AgNCs templates.
机译:近年来,基于DNA封装的银纳米簇(DNA / AgNCs)的传感器由于在生物成像,生物传感和酶分析中的各种应用而受到越来越多的关注。考虑到DNA / AgNCs在实际应用中的潜力,有必要在较长时间内对荧光稳定性进行系统研究。但是,核酸特性与DNA / AgNCs的长期稳定性之间的相关性尚不清楚。使用将DNA模板的二级结构标准化的锁定至解锁传感器,我们研究了DNA结构与AgNCs荧光稳定性之间的相关性。 DNA / AgNCs的合成后,荧光和模板的结构在三周内受到监控。通过将荧光光谱与凝胶内荧光分析相结合,我们发现由二聚体结构的DNA / AgNCs模板封装的AgNCs比发夹结构的DNA / AgNCs模板更稳定。虽然三聚体模板的橙色荧光在三周内增加,但发夹模板的红色荧光在室温下两天内减少了> 80%。进一步的测试表明,与二聚体封装的橙色AgNC相比,发夹封装的红色发射AgNC对大气氧的氧化更敏感。我们的观察结果可能为通过调节DNA二级结构封装光物理上更稳定的AgNC提供了重要线索。此处提出的策略对于DNA / AgNCs模板的实际应用可能至关重要。

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