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首页> 外文期刊>Acta biomaterialia >Chemical template-assisted synthesis of monodisperse rattle-type Fe3O4@C hollow microspheres as drug carrier
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Chemical template-assisted synthesis of monodisperse rattle-type Fe3O4@C hollow microspheres as drug carrier

机译:化学模板辅助合成单分散拨浪鼓型Fe3O4 @ C中空微球作为药物载体

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A chemical template strategy was put forward to synthesize monodisperse rattle-type magnetic carbon (Fe3O4@C) hollow microspheres. During the synthesis procedure, monodisperse Fe2O3 microspheres were used as chemical template, which released Fe3+ ions in acidic solution and initiated the in-situ polymerization of pyrrole into polypyrrole (PPy) shell. With the continual acidic etching of Fe2O3 microspheres, rattle-type Fe2O3@PPy microspheres were generated with the cavity appearing between the PPy shell and left Fe2O3 core, which were then transformed into Fe3O4@C hollow microspheres through calcination in nitrogen atmosphere. Compared with traditional physical template, the shell and cavity of rattle-type hollow microspheres were generated in one step using the chemical template method, which obviously saved the complex procedures including the coating and removal of middle shells. The experimental results exhibited that the rattle-type Fe3O4@C hollow microspheres with different parameters could be regulated through controlled synthesis of the intermediate Fe2O3@PPy product. Moreover, when the rattle-type Fe3O4@C hollow microspheres were investigated as drug carrier, they manifested sustained-release behaviour of doxorubicin, justifying their promising applications as carriers in drug delivery.
机译:提出了一种化学模板策略,以合成单分散拨浪鼓型磁性碳(Fe3O4 @ C)中空微球。在合成程序期间,单分散Fe2O3微球用作化学模板,其在酸性溶液中释放Fe3 +离子,并引发了吡咯进入聚吡咯(PPY)壳的原位聚合。利用Fe2O3微球的连续酸性蚀刻,用Ppy壳与左Fe 2 O 3核之间出现的腔体产生拨浪鼓型Fe2O3 @ PPY微球,然后通过氮气氛中的煅烧转化为Fe3O4 @ C中空微球。与传统的物理模板相比,使用化学模板方法在一步中产生拨浪鼓型中空微球的壳和腔,这明显挽救了包括涂层和去除中壳的复杂程序。实验结果表明,通过控制中间Fe2O3 @ PPY产品的控制,可以对具有不同参数的拨浪鼓型Fe3O4 @ C中空微球。此外,当研究拨浪鼓型Fe3O4 @ C中空微球作为药物载体时,它们表现出多柔比星的缓释行为,使其有前途的应用作为药物递送中的载体。

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