Synthesis and Solid State Pharmaceutical Centre, School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, Dublin 2, Ireland.
Synthesis and Solid State Pharmaceutical Centre, School of Pharmacy and Pharmaceutical Sciences, Trinity College Dublin, Dublin 2, Ireland.
Int J Pharm. 2020 Mar 15;577:119051. doi: 10.1016/j.ijpharm.2020.119051. Epub 2020 Jan 22.
The novel process of crystallo-co-spray drying of paracetamol and α-lactose monohydrate was investigated by varying the spray dryer inlet temperature and inlet feed solvent composition. A crystalline agglomerate was obtained with no change to the physical structure of either component throughout both investigations and with possible interactions between the hydroxyl groups of the α-lactose monohydrate and the amide and hydroxyl groups of the paracetamol detected. The percentage soluble fraction of the components in the inlet feed had the largest influence on the morphology of the final dried agglomerate. Low excipient soluble fraction resulted in an increase in paracetamol surface coating and high excipient soluble fraction produced agglomerates of highly mixed components. The use of crystallo-co-spray drying can serve as a method of producing an agglomerated blend of crystalline co-spray dried components leading to possible opportunities for process intensification with the reduction of process steps such as blending, agglomeration, drying and milling into one single stage.
采用改变喷雾干燥器进口温度和进口进料溶剂组成的方法,研究了扑热息痛和α-乳糖一水合物的结晶共喷雾干燥的新方法。在这两项研究中,都得到了一种结晶团聚体,其中任何一种成分的物理结构都没有发生变化,并且检测到α-乳糖一水合物的羟基与扑热息痛的酰胺和羟基之间可能存在相互作用。进料中各成分的可溶分数对最终干燥团聚体的形态有最大的影响。低赋形剂可溶分数导致扑热息痛表面涂层增加,而高赋形剂可溶分数则产生高度混合成分的团聚体。结晶共喷雾干燥的使用可以作为一种生产结晶共喷雾干燥成分的团聚体混合物的方法,有可能通过将混合、团聚、干燥和研磨等多个步骤减少到一个单一的阶段,从而实现工艺强化。