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溶剂混合物对通过电喷雾法制备的羟丙基甲基纤维素醋酸琥珀酸酯-塞来昔布微粒的影响。

Influence of solvent mixtures on HPMCAS-celecoxib microparticles prepared by electrospraying.

作者信息

Bohr Adam, Wang Yingya, Beck-Broichsitter Moritz, Yang Mingshi

机构信息

Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, DK-2100, Denmark.

Department of Pharmaceutics and Biopharmacy, Philipps-Universität, Marburg, Germany.

出版信息

Asian J Pharm Sci. 2018 Nov;13(6):584-591. doi: 10.1016/j.ajps.2018.01.007. Epub 2018 Mar 12.

Abstract

Hypromellose acetate succinate (HPMCAS) microparticles containing the poorly-water soluble drug celecoxib (CEL) were prepared by electrospraying intended for oral drug delivery. Various solvent mixtures with different solubility for CEL and HPMCAS were used to induce changes in the polymer structural conformation of the microparticles. The performance of the prepared microparticles was evaluated by studying the solid state from, particle size and morphology, radial drug distribution and drug release. CEL was amorphous in all electrosprayed HPMCAS microparticles. The particle size and morphology was dependent on the solubility of HPMCAS in the solvent mixture used with poorer solvents resulting in smaller microparticles with rougher appearance. The CEL distribution on the particles surface was relatively homogeneous and similar for all microparticles. Drug release from the microparticles was observed at a higher rate depending on the solubility of HPMCAS in the solvent used for electrospraying, and in all cases an at least 4-fold higher rate was observed compared with the crystalline drug. Drug precipitation from the supersaturated solution was inhibited by HPMCAS for all microparticles based on its parachute effect while crystalline CEL did not reach supersaturation. This study demonstrated that electrospraying can be used to produce microparticles with tailored properties for pharmaceutical application by adjusting solvent selection.

摘要

通过电喷雾法制备了含难溶性药物塞来昔布(CEL)的醋酸羟丙甲纤维素琥珀酸酯(HPMCAS)微粒,用于口服给药。使用对CEL和HPMCAS具有不同溶解度的各种溶剂混合物来诱导微粒聚合物结构构象的变化。通过研究固态形式、粒径和形态、径向药物分布以及药物释放来评估所制备微粒的性能。在所有电喷雾的HPMCAS微粒中,CEL均为无定形。粒径和形态取决于HPMCAS在与较差溶剂混合使用的溶剂中的溶解度,较差溶剂会导致形成外观更粗糙的较小微粒。所有微粒的CEL在颗粒表面的分布相对均匀且相似。观察到微粒的药物释放速率较高,这取决于HPMCAS在用于电喷雾的溶剂中的溶解度,并且在所有情况下,与结晶药物相比,观察到的释放速率至少高4倍。基于其降落伞效应,HPMCAS对所有微粒均抑制了过饱和溶液中的药物沉淀,而结晶CEL未达到过饱和状态。本研究表明,通过调整溶剂选择,电喷雾法可用于生产具有定制特性的微粒,以用于药物应用。

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