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Dual-Porosity Hollow Carbon Spheres with Tunable Through-Holes for Multi-Guest Delivery

机译:双孔隙中空碳球,可调节通孔,用于多次访客交付

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摘要

Dual-porosity hollow carbon spheres (DPHCs) with small mesopores (2-4 nm) and large through-holes (20-30 nm) in shells were successfully synthesized using colloidal silica as the template, small silica nanoparticles as nanomasks, and nontoxic dopamine as the carbon precursor followed by post-carbonization and etching. The synthesized DPHCs were further oxidized to be hydrophilic and then used to simultaneously deliver the protein bovine serum albumin (21 x 4 x 14 nm(3)) and the small molecule doxorubicin (1 nm), which exhibited a high loading capacity of 689.4 and 1421.2 mg/g, respectively. The release of these two guest molecules can be controlled independently under the stimuli of heat and acidity. In vitro and in vivo experiments also proved that the DPHCs are promising for the co-delivery of multiple cargoes of different sizes.
机译:使用胶体二氧化硅作为模板,小二氧化硅纳米粒子作为纳米瘤,和无毒多巴胺,用壳体中的双孔隙中空碳球(Dphcs)和壳中的大孔(2-4nm)和大的通孔(20-30nm)成功合成壳中的小硅纳米粒子,和无毒多巴胺 作为碳前体,然后是碳化和蚀刻。 将合成的DPHC进一步氧化以亲水,然后用于同时递送蛋白质牛血清白蛋白(21×4×14nm(3))和呈现高负载能力的小分子多柔比蛋白(3) 分别为689.4和1421.2 mg / g。 这两个客体分子的释放可以在热和酸度的刺激下独立地控制。 体外和体内实验也证明,DPHC是对不同尺寸的多个货物的共同交付的承诺。

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