干粉吸入器
气溶胶
材料科学
结块
纳米团簇
化学稳定性
再现性
渗透(战争)
布地奈德
化学工程
纳米技术
色谱法
吸入器
化学
吸入
复合材料
有机化学
数学
医学
运筹学
哮喘
内科学
工程类
解剖
作者
Nashwa El-Gendy,Shan Huang,Parthiban Selvam,Pravin Soni,Cory Berkland
摘要
The physical and chemical stability of dry powder aerosol formulations is an essential component in the development of an inhaled therapeutic. The pharmaceutical processing methods and storage conditions are primary determinants of the stability of a dry powder inhaler (DPI) formulation. Wet milling was used to produce budesonide NanoClusters (NCs), which are agglomerates of drug nanoparticles (≈ 300 nm) with a mean aerodynamic diameter between 1 and 3 µm, capable of deep lung penetration. In this study, the reproducibility of NC processing and performance was established. The physical stability of a selected budesonide NC formulation was investigated using industry standard dose content uniformity and cascade impaction techniques. The chemical stability of the lead formulation was also determined as a function of processing parameters and storage conditions. This study confirms the reproducibility and robust stability of NC powders as a novel means to turn drug particles into high-performance aerosols.
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