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首页> 外文期刊>Journal of Microencapsulation: Microcapsules Liposomes Nanoparticles Microcells Microspheres >Development of a new cyclosporine formulation based on poly(caprolactone) microspheres
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Development of a new cyclosporine formulation based on poly(caprolactone) microspheres

机译:基于聚己内酯微球的新型环孢素制剂的开发

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摘要

The present study describes the development of a new cyclosporine formulation based on polycaprolactone (PCL) microspheres (MS) prepared by the solvent evaporation method. Ternary phase diagrams were used to identify the domains where MS were formed. The application of central composite designs established the influence of several technological (stirring speed) and formulation factors (polymer and surfactant amounts, and organic solvent volume) on the size of PCL MS. Cyclosporine-loaded MS of a size around 2.5 #mu#m were prepared and characterized. The stability of the systems, either alone or laaded with cyclosporine, stored at 8 deg C and room temperature (RT) was assessed as well. Freeze-drying was evaluated as an alternative method to achieve longterm stability. The experimental design showed that the stirring speed and the organic phase volume were the only parameters significantly affecting the MS size. Experimental conditions selected to obtain CyA-loaded MS of 2.5 #mu#m resulted in a high entrapment percentage (98 (+-) 0.66%), with the drug dissolved or molecularly dispersed within the dense polymeric matrix of MS. After 12 months of storage at 8 deg C and RT, PCI, MS remained physically stable, although the crystallinity of the polymer increaed by 35% upon storage at both temperatures. Freeze-drying studies revealed that MS could be successfully lyophilized in the absence of cryoprotectants without significant cryoprotectant was essential to keep the initial particle size. Therefore, a stable MS-based CyA formulation was easily prepared and characterized. This formulation offer the possibility of CyA administration through different routes.
机译:本研究描述了一种新的环孢素制剂的开发,该制剂基于通过溶剂蒸发法制备的聚己内酯(PCL)微球(MS)。三元相图用于鉴定形成MS的域。中心复合材料设计的应用建立了多种技术(搅拌速度)和配方因素(聚合物和表面活性剂的量以及有机溶剂的体积)对PCL MS尺寸的影响。制备并表征了大小为约2.5μm的环孢霉素负载的MS。还评估了在8摄氏度和室温(RT)下储存的系统的稳定性,无论是单独使用还是用环孢素包被。冷冻干燥作为获得长期稳定性的替代方法进行了评估。实验设计表明,搅拌速度和有机相体积是显着影响MS尺寸的唯一参数。为获得2.5#μm的CyA负载MS而选择的实验条件导致较高的包封率(98(±)0.66%),药物溶解或分子分散在MS的致密聚合物基质中。在8摄氏度和室温下储存12个月后,PCI,MS保持了物理稳定性,尽管在两种温度下储存时聚合物的结晶度均增加了35%。冻干研究表明,在没有冷冻保护剂的情况下,MS可以成功冻干,而没有显着的冷冻保护剂对于保持初始粒径至关重要。因此,容易制备和表征稳定的基于MS的CyA制剂。该制剂提供了通过不同途径施用CyA的可能性。

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