梁国海, 周小明. DNA调控的银纳米簇的合成及应用进展[J]. 华南师范大学学报(自然科学版), 2016, 48(6): 73-82.
引用本文: 梁国海, 周小明. DNA调控的银纳米簇的合成及应用进展[J]. 华南师范大学学报(自然科学版), 2016, 48(6): 73-82.
DNA-Protected Silver Nanoclusters: Synthesis and Biological Applications[J]. Journal of South China Normal University (Natural Science Edition), 2016, 48(6): 73-82.
Citation: DNA-Protected Silver Nanoclusters: Synthesis and Biological Applications[J]. Journal of South China Normal University (Natural Science Edition), 2016, 48(6): 73-82.

DNA调控的银纳米簇的合成及应用进展

DNA-Protected Silver Nanoclusters: Synthesis and Biological Applications

  • 摘要: 荧光银纳米簇具有独特的光电学及化学性质,凭借合成简便、荧光强度大、量子产率高、抗光漂白能力强、荧光发射波长可调及生物相容性好等优势,近年来在生物检测、成像分析等领域受到了越来越广泛的关注。前期研究人员进行了大量的DNA调控荧光银纳米簇的合成方法研究,本工作以此为基础,总结目前已取得的关于DNA序列、长度、二级结构等对银纳米簇荧光性质的影响规律,并详细介绍荧光银纳米簇在分析检测和生物成像应用方面的最新进展。相信随着荧光纳米簇材料的应用优势逐步凸显,该领域的研究将吸引更广泛的关注,并推动相关交叉学科的进展。

     

    Abstract: Fluorescent silver nanoclusters are finding ever-expanding roles as probes and biolabels due to their extraordinary physical and chemical characteristics, including facile synthesis, good quantum yields, high photostability, tunable fluorescence emission, and good biocompatibility. Great efforts have been devoted to the exploration of creating DNA templated silver nanoclusters (DNA-AgNCs) in recent years. Here we focus on the recent advances in the synthesis of DNA-AgNCs, and explore the connection between the chemical/photophysical properties of DNA-AgNCs and the sequence, length, and secondary structure of DNA scaffolds. After that, some successful examples of using DNA-AgNCs in biological detection and imaging will be presented. We expect that the rapidly growing interest in metal nanocluster-based biomedical applications will certainly not only stimulate research in this highly active field, but also inspire broader concerns across various disciplines.

     

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