Fine excipient materials in carrier-based dry powder inhalation formulations: The interplay of particle size and concentration effects

IF 5.2 2区 医学 Q1 PHARMACOLOGY & PHARMACY
Mustafa M.A. Elsayed , Iman M. Alfagih , Katrina Brockbank , Fawaz Alheibshy , Alhassan H. Aodah , Raisuddin Ali , Khaled Almansour , Ahmed O. Shalash
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Abstract

The contributions of fine excipient materials to drug dispersibility from carrier-based dry powder inhalation (DPI) formulations are well recognized, although they are not completely understood. To improve the understanding of these contributions, we investigated the influences of the particle size of the fine excipient materials on characteristics of carrier-based DPI formulations. We studied two particle size grades of silica microspheres, with volume median diameters of 3.31 μm and 8.14 μm, as fine excipient materials. Inhalation formulations, each composed of a lactose carrier material, one of the fine excipient materials (2.5% or 15.0% w/w), and a drug (fluticasone propionate) material (1.5% w/w) were prepared. The physical microstructure, the rheological properties, the aerosolization pattern, and the aerodynamic performance of the formulations were studied. At low concentration, the large silica microspheres had a more beneficial influence on the drug dispersibility than the small silica microspheres. At high concentration, only the small silica microspheres had a beneficial influence on the drug dispersibility. The results reveal influences of fine excipient materials on mixing mechanics. At low concentration, the fine particles improved deaggregation and distribution of the drug particles over the surfaces of the carrier particles. The large silica microspheres were associated with a greater mixing energy and a greater improvement in the drug dispersibility than the small silica microspheres. At high concentration, the large silica microspheres kneaded the drug particles onto the surfaces of the carrier particles and thus impaired the drug dispersibility. As a critical attribute of fine excipient materials in carrier-based dry powder inhalation formulations, the particle size demands robust specification setting.

Abstract Image

以载体为基础的干粉吸入制剂中的精细辅料:粒度和浓度效应的相互作用
精细辅料对以载体为基础的干粉吸入(DPI)制剂中药物分散性的贡献已得到广泛认可,但人们对这些贡献并不完全了解。为了加深对这些影响的理解,我们研究了细小辅料的粒度对载体型干粉吸入制剂特性的影响。我们研究了两种粒度等级的二氧化硅微球,它们的体积中值直径分别为 3.31 μm 和 8.14 μm。制备了由乳糖载体材料、一种精细辅料材料(2.5% 或 15.0% w/w)和药物(丙酸氟替卡松)材料(1.5% w/w)组成的吸入制剂。研究了制剂的物理微观结构、流变特性、气溶胶模式和空气动力学性能。在低浓度下,大硅胶微球比小硅胶微球对药物分散性的影响更大。在高浓度下,只有小硅胶微球对药物分散性有有利影响。结果显示了细小辅料对混合机械的影响。在低浓度下,细颗粒改善了药物颗粒在载体颗粒表面的解聚和分布。与小硅胶微球相比,大硅胶微球的混合能更大,药物分散性的改善也更大。在高浓度下,大硅胶微球会将药物颗粒挤压到载体颗粒的表面,从而影响药物的分散性。作为载体型干粉吸入制剂中精细辅料的关键属性,粒度要求严格的规格设定。
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来源期刊
International Journal of Pharmaceutics: X
International Journal of Pharmaceutics: X Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
6.60
自引率
0.00%
发文量
32
审稿时长
24 days
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