Department of Aerosols Chemistry and Physics, Institute of Chemical Process Fundamentals of the Czech Academy of Science , Prague , Czech Republic.
Food and Drug Department, University of Parma , Parma , Italy.
Drug Dev Ind Pharm. 2019 Oct;45(10):1664-1673. doi: 10.1080/03639045.2019.1652636. Epub 2019 Aug 30.
Colistimethate sodium (CMS) for treatment of lung infections in cystic fibrosis patient was transformed into a dry powder for inhalation by spray drying. Design of Experiment was applied for understanding the role of the spray-drying process parameters on the critical quality attributes of the CMS spray-dried (SD) powders and agglomerates thereof. Eleven experimental SD microparticle powders were constructed under different process conditions according to a central composite design. The SD microparticles were then agglomerated in soft pellets. Eleven physico-chemical characteristics of SD CMS microparticle powders or agglomerates thereof were selected as critical quality attributes. The yield of SD process was higher than 75%. The emitted fraction of agglomerates from RS01 inhaler was 75-84%, and the fine particle fraction (particles <5 µm) was between 58% and 62%. The quality attributes of CMS SD powders and respective agglomerates that were significantly influenced by spray-drying process parameters were residual solvent and drug content of the SD microparticles as well as bulk density and respirable dose of the agglomerates. These attributes were also affected by the combination of the process variables. The air aspiration rate was found as the most positively influential on drug and solvent content and respirable dose. The residual solvent content significantly influenced the powder bulk properties and aerodynamic behavior of the agglomerates, i.e. quality attributes that govern drug metering in the device and the particles lungs deposition. Agglomerates of CMS SD microparticles, in combination with RS01 DPI, showed satisfactory results in terms of dose emitted and fine particle fraction.
CMS 钠(CMS)经喷雾干燥转化为干粉,用于囊性纤维化患者肺部感染的治疗。实验设计被用于了解喷雾干燥工艺参数对 CMS 喷雾干燥(SD)粉末及其团聚体的关键质量属性的作用。根据中心复合设计,在不同的工艺条件下构建了 11 个实验性 SD 微粒子粉末。然后,将 SD 微粒子在软丸剂中团聚。选择了 11 个 SD CMS 微粒子粉末或其团聚体的物理化学特性作为关键质量属性。SD 工艺的收率高于 75%。从 RS01 吸入器中发射的团聚体的分数为 75-84%,而细颗粒分数(<5μm 的颗粒)在 58%至 62%之间。SD 过程参数显著影响 CMS SD 粉末及其相应团聚体的质量属性是残留溶剂和 SD 微粒子的药物含量以及团聚体的堆密度和可吸入剂量。这些属性也受到工艺变量组合的影响。空气抽吸率被发现对药物和溶剂含量以及可吸入剂量有最积极的影响。残留溶剂含量显著影响团聚体的粉末堆积特性和空气动力学行为,即控制药物计量装置和肺部沉积的颗粒的质量属性。CMS SD 微粒子的团聚体与 RS01 DPI 结合,在发射剂量和细颗粒分数方面显示出令人满意的结果。