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首页> 外文期刊>Biomaterials Science >Magnetic nanocomposite of hydroxyapatite ultrathin nanosheets/Fe_3O_4 nanoparticles: microwave-assisted rapid synthesis and application in pH-responsive drug release
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Magnetic nanocomposite of hydroxyapatite ultrathin nanosheets/Fe_3O_4 nanoparticles: microwave-assisted rapid synthesis and application in pH-responsive drug release

机译:羟基磷灰石超薄纳米片/ Fe_3O_4纳米粒子的磁性纳米复合材料:微波辅助快速合成及其在pH响应药物释放中的应用

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摘要

Synthetic hydroxyapatite (HAP) nanostructured materials have been considered as promising biomaterials due to their excellent biocompatibility. In this study, a magnetic nanocomposite consisting of HAP ultrathin nanosheets (UNs) and Fe_3O_4 magnetic nanoparticles (MNs) has been prepared using a rapid microwave-assisted route. The Fe_3O_4 magnetic nanoparticles are hybridized with HAP ultrathin nanosheets, which self-assemble to form a hierarchically nanostructured magnetic nanocomposite (HAPUN/MNs). The as-prepared HAPUN/MNs nanocomposite is characterized and investigated as a drug nanocarrier using hemoglobin (Hb) and docetaxel (Dtxl) as model drugs. The adsorption amount of Hb on the HAPUN/MNs nanocomposite increases with the increasing initial Hb concentration. The release of Hb from the HAPUN/MNs nanocomposite is essentially governed by a diffusion process. The HAPUN/MNs nanocomposite has a good sustained release profile for Dtxl, and shows good pH-responsive drug release properties, which can be explained by the gradual dissolution of HAP in a low pH value environment. The HAPUN/MNs nanocomposite has a high biocompatibility and also a high in vitro anticancer effect after loading Dtxl.
机译:合成羟基磷灰石(HAP)纳米结构材料因其出色的生物相容性而被认为是有前途的生物材料。在这项研究中,使用快速微波辅助途径制备了由HAP超薄纳米片(UN)和Fe_3O_4磁性纳米颗粒(MNs)组成的磁性纳米复合材料。 Fe_3O_4磁性纳米粒子与HAP超薄纳米片杂交,后者可以自组装形成分层的纳米结构磁性纳米复合材料(HAPUN / MNs)。使用血红蛋白(Hb)和多西他赛(Dtxl)作为模型药物,对制得的HAPUN / MNs纳米复合材料进行表征并研究为药物纳米载体。 HbUN / MNs纳米复合材料上Hb的吸附量随初始Hb浓度的增加而增加。从HAPUN / MNs纳米复合物中释放Hb基本上受扩散过程控制。 HAPUN / MNs纳米复合材料对Dtxl具有良好的持续释放特性,并显示出良好的pH响应药物释放特性,这可以通过在低pH值环境中HAP逐渐溶解来解释。装载Dtxl后,HAPUN / MNs纳米复合材料具有很高的生物相容性和体外抗癌作用。

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