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首页> 外文期刊>Bulletin of the Korean Chemical Society >Conjugation strategies of DNA to gold nanoparticles
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Conjugation strategies of DNA to gold nanoparticles

机译:DNA与金纳米颗粒的偶联策略

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DNA-modified gold nanoparticles (NPs) have been extensively explored in various applications including the construction of three-dimensional (3D) assembly architectures and biomedical applications. As ligand molecules, DNA strands can facilitate the building block function of gold NPs due to the inherent nature of DNA bonding, that is, Watson-Crick base pairing. In addition, the negative electrostatic character of DNA backbones renders colloidal gold NPs stability and robustness under various aqueous environments. Therefore, DNA conjugation to gold NP surfaces is a key step for stabilizing, controlling, and utilizing DNA-modified gold NPs, and the working conjugation strategy should be employed and implemented for a specific application. This review covers various DNA conjugation strategies to gold NPs with fundamental binding features of DNA strands with varying functional groups to gold NP surfaces. DNA grafting density and directional grafting strategies on gold NPs are also discussed, which is a key factor to construct 3D NP assembly architectures via DNA hybridization.
机译:DNA修饰的金纳米颗粒(NPs)已在各种应用中得到广泛探索,包括三维(3D)组装结构的构建和生物医学应用。作为配体分子,由于DNA键的固有性质,即Watson-Crick碱基配对,DNA链可以促进金NPs的构建块功能。此外,DNA骨架的负静电特性使胶体金NPs在各种水性环境下具有稳定性和稳健性。因此,DNA与金NP表面的偶联是稳定、控制和利用DNA修饰金NPs的关键步骤,应针对特定应用采用和实施有效的偶联策略。本文综述了各种DNA与金NP的偶联策略,这些策略具有与金NP表面具有不同官能团的DNA链的基本结合特征。还讨论了金NPs的DNA接枝密度和定向接枝策略,这是通过DNA杂交构建3D NP组装结构的关键因素。

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