首页> 外文期刊>Drug Design, Development and Therapy >Formulation and in vitro characterization of rifampicin-loaded porous poly (ε-caprolactone) microspheres for sustained skeletal delivery
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Formulation and in vitro characterization of rifampicin-loaded porous poly (ε-caprolactone) microspheres for sustained skeletal delivery

机译:负载利福平的多孔聚(ε-己内酯)微球的制备和体外表征,用于持续骨骼递送

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Purpose: Mycobacterium tuberculosis is a serious public health problem affecting hundreds of millions of elderly people worldwide, which is difficult to be treated by traditional methods because of the peculiarity of skeletal system and liver damage caused by high-dose administration. In this research, a porous drug release system has been attempted to encapsulate rifampicin (RIF) into poly (ε-caprolactone) (PCL) microspheres to improve the efficacy and benefit of anti-tuberculosis drug in skeletal system. Materials and methods: The microspheres prepared by two different methods, oil-in-oil (o/o) emulsion solvent evaporation method and oil-in-water (o/w) method, were characterized in terms of morphology, size, encapsulation efficiency, drug distribution, degradation, and crystallinity. Results: The microspheres exhibited a porous structure with evenly drug distribution prepared by o/o emulsion solvent evaporation method, and their diameter ranged from 50.54 to 57.34 μm. The encapsulation efficiency was up to 61.86% when drug-loading content was only 1.51%, and showed a little decrease with the drug-loading content increasing. In vitro release studies revealed that the drug release from porous microspheres was controlled by non-Fickian diffusion, and almost 80% of the RIF were completely released after 10 days. The results of RIF-loaded microspheres on the antibacterial activity against Staphylococcus aureus proved that the porous microspheres had strong antibacterial ability. In addition, the polymer crystallinity had prominent influence on the degradation rate of microspheres regardless of the morphology. Conclusion: It was an efficient way to entrap slightly water-soluble drug like RIF into PCL by o/o emulsion solvent evaporation method with uniform drug distribution. The RIF-loaded porous PCL microspheres showed the combination of good antimicrobial properties and excellent cytocompatibility, and it could generate gentle environment by PCL slow degradation.
机译:目的:结核分枝杆菌是一个严重的公共卫生问题,影响着全世界数亿老年人,由于骨骼系统的特殊性和高剂量给药对肝脏的损害,很难用传统方法治疗。在这项研究中,已尝试使用多孔药物释放系统将利福平(RIF)封装到聚(ε-己内酯)(PCL)微球中,以提高抗结核药在骨骼系统中的功效和益处。材料和方法:通过形态,尺寸,包封效率对通过两种不同方法制备的微球进行了表征:油包油(o / o)乳液溶剂蒸发法和水包油(o / w)方法,药物分布,降解和结晶度。结果:通过o / o乳液溶剂蒸发法制备的微球呈多孔结构,药物分布均匀,粒径为50.54〜57.34μm。当载药量仅为1.51%时,包封率高达61.86%,随载药量的增加,包封率略有下降。体外释放研究表明,药物从多孔微球的释放受非菲克扩散控制,并且10天后几乎80%的RIF完全释放。负载RIF的微球对金黄色葡萄球菌的抗菌活性结果表明,该多孔微球具有较强的抗菌能力。另外,聚合物的结晶度对微球的降解速率具有显着影响,而与形态无关。结论:这是一种通过均匀分布的O / O乳液溶剂蒸发法将RIF等水溶性药物截留在PCL中的有效方法。载有RIF的多孔PCL微球具有良好的抗菌性能和优异的细胞相容性,可通过PCL缓慢降解而产生温和的环境。

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