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干粉吸入器:一种有前景的替代载体——冻干甘露醇的几个粒径级分的物理化学性质和气溶胶化特性

Dry powder inhalers: physicochemical and aerosolization properties of several size-fractions of a promising alterative carrier, freeze-dried mannitol.

作者信息

Kaialy Waseem, Nokhodchi Ali

机构信息

School of Pharmacy, Faculty of Science and Engineering, University of Wolverhampton, Wolverhampton WV1 1LY, UK.

School of Life Sciences, University of Sussex, Falmer, Brighton BN1 9RH, UK.

出版信息

Eur J Pharm Sci. 2015 Feb 20;68:56-67. doi: 10.1016/j.ejps.2014.12.005. Epub 2014 Dec 9.

Abstract

The purpose of this work was to evaluate the physicochemical and inhalation characteristics of different size fractions of a promising carrier, i.e., freeze-dried mannitol (FDM). FDM was prepared and sieved into four size fractions. FDMs were then characterized in terms of micromeritic, solid-state and bulk properties. Dry powder inhaler (DPI) formulations were prepared using salbutamol sulphate (SS) and then evaluated in terms of drug content homogeneity and in vitro aerosolization performance. The results showed that the crystalline state of mannitol was maintained following freeze-drying for all size fractions of FDM. All FDM particles showed elongated morphology and contained mixtures of α-, β- and δ-mannitol. In comparison to small FDM particles, FDMs with larger particle sizes demonstrated narrower size distributions, higher bulk and tap densities, lower porosities and better flowability. Regardless of particle size, all FDMs generated a significantly higher (2.2-2.9-fold increase) fine particle fraction (FPF, 37.5 ± 0.9%-48.6 ± 2.8%) of SS in comparison to commercial mannitol. The FPFs of SS were related to the shape descriptors of FDM particles; however, FPFs did not prove quantitative apparent relationships with either particle size or powder bulk descriptors. Large FDM particles were more favourable than smaller particles because they produced DPI formulations with better flowability, better drug content homogeneity, lower amounts of the drug depositing on the throat and contained lower fine-particle-mannitol. Optimized stable DPI formulations with superior physicochemical and pharmaceutical properties can be achieved using larger particles of freeze-dried mannitol (FDM).

摘要

这项工作的目的是评估一种有前景的载体——即冻干甘露醇(FDM)不同粒径级分的物理化学和吸入特性。制备了FDM并将其筛分为四个粒径级分。然后从粉体学、固态和整体性质方面对FDM进行了表征。使用硫酸沙丁胺醇(SS)制备了干粉吸入器(DPI)制剂,然后从药物含量均匀性和体外雾化性能方面进行了评估。结果表明,对于FDM的所有粒径级分,冻干后甘露醇的晶态得以保持。所有FDM颗粒均呈现细长形态,且包含α-、β-和δ-甘露醇的混合物。与小粒径FDM颗粒相比,较大粒径的FDM粒径分布更窄、堆密度和振实密度更高、孔隙率更低且流动性更好。无论粒径大小,与市售甘露醇相比,所有FDM产生的SS细颗粒分数(FPF,37.5±0.9%-48.6±2.8%)均显著更高(增加2.2-2.9倍)。SS的FPF与FDM颗粒的形状描述符相关;然而,FPF与粒径或粉体整体描述符均未呈现定量的明显关系。大粒径FDM颗粒比较小颗粒更具优势,因为它们制备的DPI制剂流动性更好、药物含量均匀性更好、药物在咽喉部的沉积量更低且细颗粒甘露醇含量更低。使用较大粒径的冻干甘露醇(FDM)可实现具有优异物理化学和药学性质的优化稳定DPI制剂。

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