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Controlled Synthesis of Monodisperse Magnetic Porous/Hollow Nanostructures for Biomedical Applications

机译:对生物医学应用的单分散磁多孔/中空纳米结构的控制合成

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Monodisperse magnetite Fe3O4 porous/hollow nanoparticles were successfully synthesized through onepot solvothermal process without any surfactant and template. The Fe3O4 porous/hollow nanoparticles were synthesized controllably with tunable particle size and porosity by adjusting the initial concentrations of Fe precursor and ammonium acetate. The porous/hollow structure exhibited a great potential to encapsulate small drug molecules. Once inside the porous structures, small drug molecules would be shielded by the shell from fast reaction/deterioration in biological solutions. The porous/hollow nanoparticles could be further coupled with a specific targeting agent and be concentrated around the area of interest, where drug molecules would be released either chemically via a pH control or physically through a magnetic stimulation and activation.
机译:单分散磁铁矿Fe3O4多孔/中空纳米颗粒通过OnePot溶剂热过程成功地合成,无任何表面活性剂和模板。通过调节Fe前体和乙酸铵的初始浓度,可控地合成Fe3O4多孔/中空纳米颗粒,通过可调节粒度和孔隙率合成。多孔/中空结构表现出封装小药物分子的巨大潜力。一旦进入多孔结构,小药物分子将由壳体屏蔽来自生物溶液中的快速反应/劣化。多孔/中空纳米颗粒可以进一步与特异性靶向剂偶联,并浓缩围绕感兴趣的面积,其中药物分子将通过pH控制或物理地通过磁刺激和活化进行化学释放。

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