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首页> 外文期刊>Journal of nanomaterials >Bioactive Glass Nanoparticles as a New Delivery System for Sustained 5-Fluorouracil Release: Characterization and Evaluation of Drug Release Mechanism
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Bioactive Glass Nanoparticles as a New Delivery System for Sustained 5-Fluorouracil Release: Characterization and Evaluation of Drug Release Mechanism

机译:生物活性玻璃纳米颗粒作为5-氟尿嘧啶持续释放的新传递系统:药物释放机理的表征和评估

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Bioactive glass nanoparticles were synthesized and tested for the first time as a new delivery system for sustained 5-fluorouracil (5-FU) release. They were characterized by TEM, DTA, TGA, and FT-IR. The porosity % and specific surface area of glass nanoparticles were 85.59% and 378.36 m2/g, respectively. Thein vitrobioactivity evaluation confirmed that bioactive glass disks prepared from these nanoparticles could induce hydroxyapatite layer over their surfaces in simulated body fluid. Thein vitrodrug release experiment indicated that glass nanoparticles could serve as long-term local delivery vehicles for sustained 5-FU release. The release profile of 5-FU showed an initial fast release stage followed by a second stage of slower release. The initial burst release of 5-FU in the first day was about 23% (28.92 mg·L−1) of the total amount of loaded 5-FU, while the final cumulative percentage of the 5-FU released after 32 days was about 45.6% (57.31 mg·L−1) of the total amount of loaded 5-FU. The application of different mathematical models indicated that 5-FU was released by diffusion controlled mechanism and suggested that its release rate was dependent on glass particles dissolution, changes of surface area as well as diameter of glass particles, and concentration of loaded drug.
机译:合成并首次测试了生物活性玻璃纳米颗粒,作为用于持续释放5-氟尿嘧啶(5-FU)的新递送系统。通过TEM,DTA,TGA和FT-IR对它们进行了表征。玻璃纳米颗粒的孔隙率%和比表面积分别为85.59%和378.36 m2 / g。体外生物活性评估证实,由这些纳米颗粒制备的生物活性玻璃盘可在模拟体液中诱导其表面上的羟基磷灰石层。体外药物释放实验表明,玻璃纳米颗粒可以作为5-FU持续释放的长期局部递送载体。 5-FU的释放曲线显示了最初的快速释放阶段,随后是缓慢释放的第二阶段。第一天5-FU的初始爆发释放约为5-FU装载总量的23%(28.92 mg·L-1),而32天后最终释放的5-FU的累积百分比约为5-FU的总装载量的45.6%(57.31 mg·L-1)。不同数学模型的应用表明5-FU是通过扩散控制机制释放的,表明其释放速率取决于玻璃颗粒的溶解,玻璃颗粒的表面积和直径的变化以及载药浓度。

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