The Synthesis and Solid State Pharmaceutical Centre (SSPC), Bernal Institute, The University of Limerick, Ireland.
The Synthesis and Solid State Pharmaceutical Centre (SSPC), Bernal Institute, The University of Limerick, Ireland.
Int J Pharm. 2018 Jun 10;544(1):242-253. doi: 10.1016/j.ijpharm.2018.04.038. Epub 2018 Apr 22.
Downstream processing aspects of a stable form of amorphous itraconazole exhibiting enhanced dissolution properties were studied. Preparation of this ternary amorphous solid dispersion by either spray drying or hot melt extrusion led to significantly different powder processing properties. Particle size and morphology was analysed using scanning electron microscopy. Flow, compression, blending and dissolution were studied using rheometry, compaction simulation and a dissolution kit. The spray dried material exhibited poorer flow and reduced sensitivity to aeration relative to the milled extrudate. Good agreement was observed between differing forms of flow measurement, such as Flow Function, Relative flow function, Flow rate index, Aeration rate, the Hausner ratio and the Carr index. The stability index indicated that both powders were stable with respect to agglomeration, de-agglomeration and attrition. Tablet ability and compressibility studies showed that spray dried material could be compressed into stronger compacts than extruded material. Blending of the powders with low moisture, freely-flowing excipients was shown to influence both flow and compression. Porosity studies revealed that blending could influence the mechanism of densification in extrudate and blended extrudate formulations. Following blending, the powders were compressed into four 500 mg tablets, each containing a 100 mg dose of amorphous itraconazole. Dissolution studies revealed that the spray dried material released drug faster and more completely and that blending excipients could further influence the dissolution rate.
研究了具有增强溶解性能的稳定无定形伊曲康唑的下游处理方面。通过喷雾干燥或热熔挤出制备这种三元无定形固体分散体导致粉末加工性能显著不同。使用扫描电子显微镜分析了粒径和形态。使用流变仪、压缩模拟和溶解试剂盒研究了流动、压缩、混合和溶解。与研磨挤出物相比,喷雾干燥材料的流动性能较差,对通气的敏感性降低。不同形式的流动测量(如流动函数、相对流动函数、流动速率指数、通气速率、哈斯纳比和卡尔指数)之间观察到良好的一致性。稳定性指数表明,两种粉末在团聚、解团聚和磨损方面均稳定。片剂能力和可压缩性研究表明,喷雾干燥材料可以压缩成比挤出材料更强的片剂。低水分、自由流动赋形剂的粉末混合显示出对流动和压缩的影响。孔隙率研究表明,混合可以影响挤出物和混合挤出物配方的致密化机制。混合后,将粉末压缩成四个 500mg 片剂,每个片剂含有 100mg 剂量的无定形伊曲康唑。溶解研究表明,喷雾干燥材料释放药物更快、更完全,并且混合赋形剂可以进一步影响溶解速率。