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喷雾干燥聚合物颗粒中酮洛芬的加速释放:相变和辅料分布的重要性。

Accelerated ketoprofen release from spray-dried polymeric particles: importance of phase transitions and excipient distribution.

作者信息

Gue Emilie, Muschert Susanne, Willart Jean-Francois, Danede Florence, Delcourt-Debruyne Elisabeth, Descamps Marc, Siepmann Juergen

机构信息

College of Pharmacy, University of Lille , Lille , France .

出版信息

Drug Dev Ind Pharm. 2015 May;41(5):838-50. doi: 10.3109/03639045.2014.908902. Epub 2014 Apr 28.

Abstract

HPMC-, PVPVA- and PVP-based microparticles loaded with 30% ketoprofen were prepared by spray drying suspensions or solutions in various water:ethanol blends. The inlet temperature, drying gas and feed flow rates were varied. The resulting differences in the ketoprofen release rates in 0.1 M HCl could be explained based on X-ray diffraction, mDSC, SEM and particle size analysis. Importantly, long term stable drug release could be provided, being much faster than: (i) drug release from a commercial reference product, (ii) the respective physical drug:polymer mixtures, as well as (iii) the dissolution of ketoprofen powder as received. In addition, highly supersaturated release media were obtained, which did not show any sign for re-crystallization during the observation period. Surprisingly, spraying suspensions resulted in larger microparticles exhibiting faster drug release compared to spraying solutions, which resulted in smaller particles exhibiting slower drug release. These effects could be explained based on the physico-chemical characteristics of the systems.

摘要

通过在各种水与乙醇的混合溶剂中喷雾干燥悬浮液或溶液,制备了负载30%酮洛芬的羟丙基甲基纤维素(HPMC)、聚乙烯吡咯烷酮醋酸乙烯酯(PVPVA)和聚乙烯吡咯烷酮(PVP)基微粒。改变了进口温度、干燥气体和进料流速。基于X射线衍射、调制差示扫描量热法(mDSC)、扫描电子显微镜(SEM)和粒度分析,可解释在0.1 M盐酸中酮洛芬释放速率的差异。重要的是,可以实现长期稳定的药物释放,其速度远快于:(i)市售参比产品的药物释放;(ii)相应的物理药物 - 聚合物混合物;以及(iii)所接收的酮洛芬粉末的溶解。此外,获得了高度过饱和的释放介质,在观察期内未显示出任何重结晶迹象。令人惊讶的是,与喷雾溶液相比,喷雾悬浮液产生的微粒更大,药物释放更快,而喷雾溶液产生的微粒更小,药物释放更慢。基于体系的物理化学特性可以解释这些效应。

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