Engineering Research Centre of Advanced Powder Technology (ERCAPT), School of Chemical and Environmental Engineering, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, Jiangsu Province, 215123, People's Republic of China.
AAPS PharmSciTech. 2022 Aug 2;23(6):211. doi: 10.1208/s12249-022-02371-0.
Active pharmaceutical ingredient (API)-embedded dry powder for inhalation (AeDPI) is highly desirable for pulmonary delivery of high-dose drug. Herein, a series of spray freeze-dried (SFD) ciprofloxacin hydrochloride (CH)-embedded dry powders were fabricated via a self-designed micro-fluidic spray freeze tower (MFSFT) capable of tuning freezing temperature of cooling air as the refrigerant medium. The effects of total solid content (TSC), mass ratio of CH to -leucine (Leu) as the aerosol dispersion enhancer, and the freezing temperature on particle morphology, size, density, moisture content, crystal properties, flowability, and aerodynamic performance were investigated. It was found that the Leu content and freezing temperature had considerable influence on the fine particle fraction (FPF) of the SFD microparticles. The optimal formulation (CH/Leu = 7:3, TSC = 2%w/w) prepared at - 40°C exhibited remarkable effective drug deposition (~ 33.38%), good aerodynamic performance (~ 47.69% FPF), and excellent storage stability with ultralow hygroscopicity (~ 1.93%). This work demonstrated the promising feasibility of using the MFSFT instead of conventional liquid nitrogen assisted method in the research and development of high-dose AeDPI.
活性药物成分(API)嵌入干粉吸入剂(AeDPI)是肺部输送高剂量药物的理想选择。本文通过自行设计的微流喷雾冷冻塔(MFSFT),制备了一系列盐酸环丙沙星(CH)嵌入的喷雾冷冻干燥(SFD)干粉,该塔能够调节冷却空气的冷冻温度作为制冷剂介质。考察了总固体含量(TSC)、CH 与 -亮氨酸(Leu)的质量比(作为气溶胶分散增强剂)和冷冻温度对颗粒形态、粒径、密度、含水量、晶体性质、流动性和空气动力学性能的影响。结果表明,Leu 含量和冷冻温度对 SFD 微颗粒的细颗粒分数(FPF)有相当大的影响。在-40°C 下制备的最佳配方(CH/Leu=7:3,TSC=2%w/w)表现出显著的有效药物沉积(33.38%)、良好的空气动力学性能(47.69%FPF)和超低吸湿性(~1.93%)的优异储存稳定性。这项工作表明,MFSFT 有希望替代传统的液氮辅助方法,用于高剂量 AeDPI 的研究和开发。