University of Ljubljana Faculty of Pharmacy, Department of Pharmaceutical Technology, Aškerčeva cesta 7, 1000 Ljubljana, Slovenia.
Research Centre for Pharmaceutical Engineering GmbH, Inffeldgasse 13, 8010 Graz, Austria.
Eur J Pharm Sci. 2024 Nov 1;202:106880. doi: 10.1016/j.ejps.2024.106880. Epub 2024 Aug 22.
High-shear (HS) melt granulation and hot melt extrusion (HME) were compared as perspective melt-based technologies for preparation of amorphous solid dispersions (ASDs). ASDs were prepared using mesoporous carriers (Syloid 244FP or Neusilin US2), which were loaded with carvedilol dispersed in polymeric matrix (polyethylene glycol 6000 or Soluplus). Formulations with high carvedilol content were obtained either by HME (11 extrudates with polymer:carrier ratio 1:1) or HS granulation (6 granulates with polymer:carrier ratio 3:1). DSC and XRD analysis confirmed the absence of crystalline carvedilol for the majority of prepared ADSs, thus confirming the stabilizing effect of selected polymers and carriers over amorphous carvedilol. HME produced larger particles compared to HS melt granulation, which was in line with better flow time and Carr index of extrudates. Moreover, SEM images revealed smoother surface of ASDs obtained by HME, contributing to less obstructed flow. The rougher and more porous surface of HS granules was correlated to larger granule specific surface area, manifesting in faster carvedilol release from Syloid 244FP-based granules, as compared to their HME counterparts. Regarding dissolution, the two HS-formulations performed superior to pure crystalline carvedilol, thereby confirming the suitability of HS melt granulation for developing dosage forms with improved carvedilol dissolution.
高剪切(HS)熔融造粒和热熔挤出(HME)被比较作为制备无定形固体分散体(ASD)的有前途的熔融基技术。ASD 使用中孔载体(Syloid 244FP 或 Neusilin US2)制备,其负载在聚合物基质(聚乙二醇 6000 或 Soluplus)中分散的卡维地洛。通过 HME(聚合物:载体比为 1:1 的 11 个挤出物)或 HS 造粒(聚合物:载体比为 3:1 的 6 个颗粒)获得高卡维地洛含量的制剂。DSC 和 XRD 分析证实了大多数制备的 ASD 中没有结晶卡维地洛,从而证实了所选聚合物和载体对无定形卡维地洛的稳定作用。与 HS 熔融造粒相比,HME 产生的颗粒更大,这与挤出物更好的流动时间和 Carr 指数一致。此外,SEM 图像显示 HME 获得的 ASD 表面更光滑,从而导致流动受阻减少。HS 颗粒更粗糙和多孔的表面与更大的颗粒比表面积相关,与 HME 对应物相比,其表现为从 Syloid 244FP 基颗粒中更快地释放卡维地洛。关于溶解,这两种 HS 制剂的性能优于纯结晶卡维地洛,从而证实 HS 熔融造粒适合开发改善卡维地洛溶解的制剂。