...
首页> 外文期刊>Pharmaceutics >Process Optimization and Upscaling of Spray-Dried Drug-Amino acid Co-Amorphous Formulations
【24h】

Process Optimization and Upscaling of Spray-Dried Drug-Amino acid Co-Amorphous Formulations

机译:喷雾干燥药物-氨基酸共非晶制剂的工艺优化和放大

获取原文
           

摘要

The feasibility of upscaling the formulation of co-amorphous indomethacin-lysine from lab-scale to pilot-scale spray drying was investigated. A 2 2 full factorial design of experiments (DoE) was employed at lab scale. The atomization gas flow rate (F atom , from 0.5 to 1.4 kg/h) and outlet temperature (T out , from 55 to 75 °C) were chosen as the critical process parameters. The obtained amorphization, glass transition temperature, bulk density, yield, and particle size distribution were chosen as the critical quality attributes. In general, the model showed low F atom and high T out to be beneficial for the desired product characteristics (a co-amorphous formulation with a low bulk density, high yield, and small particle size). In addition, only a low F atom and high T out led to the desired complete co-amorphization, while a minor residual crystallinity was observed with the other combinations of F atom and T out . Finally, upscaling to a pilot scale spray dryer was carried out based on the DoE results; however, the drying gas flow rate and the feed flow rate were adjusted to account for the different drying chamber geometries. An increased likelihood to achieve complete amorphization, because of the extended drying chamber, and hence an increased residence time of the droplets in the drying gas, was found in the pilot scale, confirming the feasibility of upscaling spray drying as a production technique for co-amorphous systems.
机译:研究了将共非晶吲哚美辛-赖氨酸的配方从实验室规模扩大到中试规模的喷雾干燥的可行性。在实验室规模下采用2 2 2全因子实验设计(DoE)。选择雾化气体流速(F原子,从0.5至1.4 kg / h)和出口温度(T out,从55至75°C)作为关键工艺参数。选择获得的非晶化,玻璃化转变温度,堆积密度,产率和粒度分布作为关键的质量属性。通常,该模型显示出低F原子和高T out对所需的产品特性(具有低堆积密度,高收率和小粒径的无定形配方)有利。另外,仅低F原子和高T out导致期望的完全共非晶化,而在F原子和T out的其他组合中观察到较小的残留结晶度。最后,根据能源部的结果将其升级为中型喷雾干燥机。然而,调节干燥气体流速和进料流速以考虑不同的干燥室几何形状。在中试规模中,由于扩大了干燥室,增加了实现完全非晶化的可能性,从而增加了液滴在干燥气体中的停留时间,从而证实了将喷雾干燥作为联合生产技术的可行性。非晶态系统。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号