a Davidson School of Chemical Engineering , Purdue University , West Lafayette ( IN ), USA.
b Pharmaceutical Technology and Development , AstraZeneca, Silk Road Business Park Charter Way , Cheshire , UK.
Drug Dev Ind Pharm. 2018 Nov;44(11):1826-1837. doi: 10.1080/03639045.2018.1503293. Epub 2018 Aug 31.
This work examines the influence of pharmaceutical powder formulation characteristics on granule properties formed using distributive mixing elements (DMEs) in twin screw granulation. High and low drug dose formulations with three different active pharmaceutical ingredients (APIs) were considered. The type and concentration of the API in the formulation significantly affected the dry blend particle size distribution and the wet blend dynamic yield strength. However, despite the differences in blend properties, the granule size distributions were not significantly affected by the type of API used. The granule size distributions were solely the functions of the liquid-to-solid ratio and screw element geometry. However, the granule porosities were observed to be dependent on both the liquid-to-solid ratio and the dynamic yield strength of the blends. This work is the first to study the influence of drug loading and API type on the granule attributes produced using distributive mixing elements.
这项工作研究了在双螺杆造粒中使用分配混合元件(DME)时,药物粉末配方特性对颗粒性能的影响。考虑了高剂量和低剂量药物配方,以及三种不同的活性药物成分(API)。配方中 API 的类型和浓度显著影响干混颗粒粒径分布和湿混动态屈服强度。然而,尽管混合物性质存在差异,但颗粒粒径分布不受所使用 API 类型的显著影响。颗粒粒径分布仅取决于液固比和螺杆元件几何形状。然而,观察到颗粒孔隙率取决于液固比和混合物的动态屈服强度。这项工作首次研究了药物负载和 API 类型对使用分配混合元件生产的颗粒特性的影响。