Department of Pharmacy, Shengjing Hospital of China Medical University, Shenyang, Liaoning, PR China.
Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, Shenyang, Liaoning, PR China.
Int J Pharm. 2022 Mar 5;615:121474. doi: 10.1016/j.ijpharm.2022.121474. Epub 2022 Jan 15.
To prepare Goserelin (GOS) loaded long-acting microspheres with reduced initial release and prolonged drug release time of GOS, GOS/PLGA solid dispersion (by hot-melt extrusion, HME) was dissolved/dispersed in dichloromethane (DCM) to prepare microspheres by O/W method. From results of molecular dynamics simulation, PLGA and GOS molecules completely and uniformly dissolved and dispersed in DCM, respectively. In F5 microspheres (prepared by HME-O/W method), GOS existed as molecular or amorphous state, but not aggregation. Burst release of F5 microspheres (2.75%) was similar with Zoladex™ implant (0.39%) and less than F10 microspheres (prepared by S/O/W method, 25.92%). After lag phase, GOS released rapidly from F5 microspheres and the cumulative release on the 45th days was 95.14%. After injection of F5 microspheres, GOS serum concentration was relative steady at the range of 27.64-175.27 ng/mL for nearly 35 days. AUC of F5 microspheres was almost 2 times that of F10 microspheres. Pharmacodynamics study also showed potential effect of F5 microspheres on inhibiting the secretion of testosterone in male rats. HME-O/W method is potential to establish long-acting PLGA microspheres (loading water-soluble drug), exhibiting stable drug serum concentration in vivo, and without large concentration fluctuation or serious pain/side effects.
为了制备戈舍瑞林(GOS)长效微球,以减少初始释放并延长 GOS 的药物释放时间,将 GOS/PLGA 固体分散体(通过热熔挤出,HME)溶解/分散在二氯甲烷(DCM)中,通过 O/W 法制备微球。从分子动力学模拟的结果来看,PLGA 和 GOS 分子分别完全且均匀地溶解和分散在 DCM 中。在 F5 微球(通过 HME-O/W 法制备)中,GOS 以分子或无定形状态存在,而不是聚集状态。F5 微球(释放 2.75%)的突释与 Zoladex™ 植入物(释放 0.39%)相似,小于 F10 微球(通过 S/O/W 法制备,释放 25.92%)。在滞后期之后,GOS 从 F5 微球中迅速释放,第 45 天的累积释放量为 95.14%。注射 F5 微球后,GOS 血清浓度在近 35 天内相对稳定在 27.64-175.27ng/mL 的范围内。F5 微球的 AUC 几乎是 F10 微球的 2 倍。药效学研究还表明 F5 微球对抑制雄性大鼠睾酮分泌具有潜在作用。HME-O/W 法有可能建立长效 PLGA 微球(负载水溶性药物),在体内表现出稳定的药物血清浓度,没有大的浓度波动或严重的疼痛/副作用。