Department of Pharmaceutical Chemistry, The University of Kansas, Lawrence, Kansas 66047, USA.
J Pharm Sci. 2012 Sep;101(9):3445-55. doi: 10.1002/jps.23176. Epub 2012 May 22.
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.
干粉气溶胶制剂的物理和化学稳定性是开发吸入性治疗药物的重要组成部分。药物加工方法和储存条件是干粉吸入器(DPI)制剂稳定性的主要决定因素。湿磨法被用于制备布地奈德纳米簇(NCs),这是药物纳米颗粒(≈300nm)的团聚体,平均空气动力学直径在 1 到 3μm 之间,能够深入肺部。在这项研究中,建立了 NC 加工和性能的可重现性。使用行业标准剂量含量均匀度和级联撞击技术研究了选定的布地奈德 NC 制剂的物理稳定性。还根据加工参数和储存条件确定了主导配方的化学稳定性。这项研究证实了 NC 粉末的重现性和强大的稳定性,这是将药物颗粒转化为高性能气溶胶的一种新方法。