Li Xiaojian, Vogt Frederick G, Hayes Don, Mansour Heidi M
1 University of Kentucky College of Pharmacy , Department of Pharmaceutical Sciences-Drug Development Division, Lexington, KY 40536-0596.
J Aerosol Med Pulm Drug Deliv. 2014 Apr;27(2):81-93. doi: 10.1089/jamp.2013.1078. Epub 2014 Feb 6.
The purpose was to design and characterize inhalable microparticulate/nanoparticulate dry powders of mannitol with essential particle properties for targeted dry powder delivery for cystic fibrosis mucolytic treatment by dilute organic solution spray drying, and, in addition, to tailor and correlate aerosol dispersion performance delivered as dry powder inhalers based on spray-drying conditions and solid-state physicochemical properties.
Organic solution advanced spray drying from dilute solution followed by comprehensive solid-state physicochemical characterization and in vitro dry powder aerosolization were used.
The particle size distribution of the spray-dried (SD) powders was narrow, unimodal, and in the range of ∼500 nm to 2.0 μm. The particles possessed spherical particle morphology, relatively smooth surface morphology, low water content and vapor sorption (crystallization occurred at exposure above 65% relative humidity), and retention of crystallinity by polymorphic interconversion. The emitted dose, fine particle fraction (FPF), and respirable fraction (RF) were all relatively high. The mass median aerodynamic diameters were below 4 μm for all SD mannitol aerosols.
The in vitro aerosol deposition stage patterns could be tailored based on spray-drying pump rate. Positive linear correlation was observed between both FPF and RF values with spray-drying pump rates. The interplay between various spray-drying conditions, particle physicochemical properties, and aerosol dispersion performance was observed and examined, which enabled tailoring and modeling of high aerosol deposition patterns.
目的是设计并表征具有基本颗粒特性的甘露醇可吸入微粉/纳米粉干粉,通过稀释有机溶液喷雾干燥实现靶向干粉递送用于囊性纤维化黏液溶解治疗,此外,根据喷雾干燥条件和固态物理化学性质定制并关联作为干粉吸入器递送的气溶胶分散性能。
采用从稀溶液进行有机溶液先进喷雾干燥,随后进行全面的固态物理化学表征和体外干粉雾化。
喷雾干燥(SD)粉末的粒度分布狭窄、单峰,范围在约500 nm至2.0μm。颗粒具有球形颗粒形态、相对光滑的表面形态、低含水量和蒸汽吸附(在相对湿度高于65%暴露时发生结晶),并且通过多晶型转变保持结晶度。发射剂量、细颗粒分数(FPF)和可吸入分数(RF)都相对较高。所有SD甘露醇气溶胶的质量中值空气动力学直径均低于4μm。
体外气溶胶沉积阶段模式可根据喷雾干燥泵速进行定制。观察到FPF和RF值与喷雾干燥泵速之间呈正线性相关。观察并研究了各种喷雾干燥条件、颗粒物理化学性质和气溶胶分散性能之间的相互作用,这使得能够定制和模拟高气溶胶沉积模式。