Schönfeld Barbara V, Westedt Ulrich, Wagner Karl G
Department of Pharmaceutical Technology, University of Bonn, Gerhard-Domagk-Straße 3, 53121 Bonn, Germany.
AbbVie Deutschland GmbH & Co. KG, Knollstraße 50, 67061 Ludwigshafen, Germany.
Int J Pharm X. 2021 Nov 3;3:100102. doi: 10.1016/j.ijpx.2021.100102. eCollection 2021 Dec.
The present study explored vacuum drum drying (VDD) as an alternative technology for amorphous solid dispersions (ASDs) manufacture compared to hot-melt extrusion (HME) and spray drying (SD) focusing on downstream processability (powder properties, compression behavior and tablet performance). Ritonavir (15% w/w) in a copovidone/sorbitan monolaurate matrix was used as ASD model system. The pure ASDs and respective tablet blends (TB) (addition of filler, glidant, lubricant) were investigated. Milled extrudate showed superior powder properties (e.g., flowability, bulk density) compared to VDD and SD, which could be compensated by the addition of 12.9% outer phase. Advantageously, the VDD intermediate was directly compressible, whereas the SD material was not, resulting in tablets with defects based on a high degree of elastic recovery. Compared to HME, the VDD material showed superior tabletability when formulated as TB, resulting in stronger compacts at even lower solid fraction values. Despite the differences in tablet processing, tablets showed similar tablet performance in terms of disintegration and dissolution independent of the ASD origin. In conclusion, VDD is a valid alternative to manufacture ASDs. VDD offered advantageous downstream processability compared to SD: less solvents and process steps required (no second drying), improved powder properties and suitable for direct compression.
本研究探索了真空鼓式干燥(VDD)作为一种与热熔挤出(HME)和喷雾干燥(SD)相比用于制备无定形固体分散体(ASD)的替代技术,重点关注下游加工性能(粉末性质、压缩行为和片剂性能)。以共聚维酮/脱水山梨醇单月桂酸酯基质中的利托那韦(15% w/w)作为ASD模型系统。对纯ASD及其相应的片剂混合物(TB)(添加填充剂、助流剂、润滑剂)进行了研究。与VDD和SD相比,研磨后的挤出物显示出优异的粉末性质(如流动性、堆积密度),添加12.9%的外相可弥补这一差异。有利的是,VDD中间体可直接压片,而SD材料则不行,这导致片剂因高度弹性回复而出现缺陷。与HME相比,VDD材料在制成TB时表现出更好的可压性,在更低的固体分数值下也能得到更强的压片。尽管片剂加工存在差异,但片剂在崩解和溶出方面表现出相似的片剂性能,与ASD的来源无关。总之,VDD是制备ASD的一种有效替代方法。与SD相比,VDD具有有利的下游加工性能:所需溶剂和工艺步骤更少(无需二次干燥),粉末性质得到改善,且适合直接压片。