University of Florence, Faculty of Pharmacy, Department of Pharmaceutical Sciences, Florence, Italy.
J Microencapsul. 2010;27(6):479-86. doi: 10.3109/02652040903515508.
A combined approach based on drug cyclodextrin (CD) complexation and loading into PLGA nanoparticles (NP) has been developed to improve oxaprozin therapeutic efficiency. This strategy exploits the solubilizing and stabilizing properties of CDs and the prolonged-release and targeting properties of PLGA NPs. Drug-loaded NPs, prepared by double-emulsion, were examined for dimensions, zeta-potential and entrapment efficiency. Solid-state studies demonstrated the absence of drug-polymer interactions and assessed the amorphous state of the drug-CD complex loaded into NPs. Drug release rate from NPs was strongly influenced by the presence and kind of CD used. The percentage released at 24 h varied from 16% (plain drug-loaded NPs) to 50% (drug-betaCD-loaded NPs) up to 100% (drug-methylbetaCD-loaded NPs). This result suggests the possibility of using CD complexation not only to promote, but also to regulate drug release rate from NPs, by selecting the proper type of CD or CD combination.
已开发出一种基于药物环糊精(CD)络合和载入 PLGA 纳米粒子(NP)的联合方法,以提高奥沙普秦的治疗效果。该策略利用了 CD 的增溶和稳定特性以及 PLGA NP 的缓释和靶向特性。通过双重乳液法制备载药 NP,考察了其粒径、Zeta 电位和包封效率。固态研究表明药物与聚合物之间不存在相互作用,并评估了载入 NP 中的药物-CD 复合物的无定形态。NP 中药物的释放速率受所用 CD 的存在和类型的强烈影响。24 小时时的释放百分比从 16%(普通载药 NP)变化到 50%(药物-βCD 载入 NP)至 100%(药物-甲基-βCD 载入 NP)。这一结果表明,通过选择适当类型的 CD 或 CD 组合,不仅可以促进药物从 NP 中的释放,还可以调节药物释放速率。