Iwata M, McGinity J W
College of Pharmacy, University of Texas, Austin 78712-1074.
Pharm Res. 1993 Aug;10(8):1219-27. doi: 10.1023/a:1018984722208.
Multiphase microspheres of poly(DL-lactic-co-glycolic acid) (PLGA) containing water-soluble compounds were prepared by a multiple-emulsion solvent evaporation technique. These compounds were dissolved in the aqueous phase of a W/O emulsion with soybean oil as the oil phase. This emulsion was dispersed throughout the matrix of the microsphere. The morphological properties of the multiphase microspheres during in vitro dissolution studies were compared to those of conventional microspheres prepared from the same polymer. Drug release from the multiphase microspheres was characterized by an initial uniform release for the first 20 days followed by a more rapid phase of drug release. Chlorpheniramine maleate (CPM) and brilliant blue (BB) were the soluble model compounds investigated. The release rates of these agents from the multiphase microspheres were independent of the drug content in the microspheres. The release profiles from the conventional microspheres showed a lag time of 10 and 16 days for the CPM and BB, respectively. The dissolution rate of the model soluble compounds from the conventional microspheres increased as the loading in the microspheres increased. No differences in the degradation rate of the PLGA from the multiphase and the conventional microspheres were seen during the dissolution studies.
采用复乳溶剂挥发法制备了含有水溶性化合物的聚(DL-乳酸-乙醇酸)(PLGA)多相微球。这些化合物溶解在以大豆油为油相的W/O乳液的水相中。该乳液分散在整个微球基质中。将多相微球在体外溶解研究期间的形态学性质与由相同聚合物制备的传统微球的形态学性质进行了比较。多相微球的药物释放特征为在前20天有初始均匀释放,随后是更快的药物释放阶段。马来酸氯苯那敏(CPM)和亮蓝(BB)是所研究的可溶性模型化合物。这些药物从多相微球中的释放速率与微球中的药物含量无关。传统微球的释放曲线显示,CPM和BB的滞后时间分别为10天和16天。随着微球中载药量的增加,传统微球中模型可溶性化合物的溶解速率增加。在溶解研究期间,未观察到多相微球和传统微球中PLGA降解速率的差异。