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Self-assembly and characterization of transferrin-gold nanoconstructs and their interaction with bio-interfaces

机译:自组装和表征transferrin-gold nanoconstructs及其与bio-interfaces互动

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Transferrin (Tf) conjugated to gold nanoparticles and clusters combine the protein's site-specific receptor targeting capabilities with the optical properties imparted by the nano-sized gold. We have described two different synthesis protocols, one yielding fluorescent Tf-stabilized gold nanoclusters (AuNCs) and one yielding Tf-stabilized gold nanoparticles that exhibit localized surface plasmon resonance. We demonstrate that the synthetic route employed has a large influence both on the gold nanostructure formed, and also on the structural integrity of the protein. A slight protein unfolding allows stronger interaction with lipids, and was found to significantly perturb lipid monolayers. Interactions between the protein-gold nanostructures and three different cell types were also assessed, indicating that the enhanced membrane affinity may be attributed to intercellular membrane differences.
机译:转铁蛋白(Tf)共轭金纳米粒子和集群结合蛋白的位点与光受体靶向功能由纳米级的金属性的。描述了两种不同的合成协议,一个产生荧光Tf-stabilized黄金制备(AuNCs)和一个屈服Tf-stabilized展览的金纳米粒子局部表面等离子体共振。证明采用的合成路线一个很大的影响在金奈米结构形成,和结构的完整性的蛋白质。强相互作用与脂质,被发现极大地扰乱脂质层。protein-gold之间的相互作用纳米结构和三种不同的细胞类型也评估,表明增强膜亲和可能归因于膜细胞间的差异。

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