Department of Pharmaceutical Technology, Jadavpur University, Kolkata, India.
Drug Dev Ind Pharm. 2012 Feb;38(2):171-9. doi: 10.3109/03639045.2011.592532. Epub 2011 Jul 1.
Pulmonary route of administration is becoming more popular for drug delivery in pulmonary tract and lungs for local and systemic actions.
A dry powder inhaler (DPI) for delivery of dry powder and a nose-only inhalation chamber for small animals that can be used with nebuliser/DPI were designed.
The inhalation chamber was made with a polypropylene-rectangular box and centrifuge tubes. DPI was made of a polypropylene tube. Micronized voriconazole and voriconazole solution were used for DPI and nebulizer, respectively, for both in vitro and in vivo studies.
In vitro drug deposition from nebulizer was found to be 11-26% w/w and that from DPI was 42 to 57% w/w depending on experimental set up. Uniform deposition across all the inhalation ports was observed irrespective of the methods. Respirable fraction (RF) varied from 34 to 73% in case of nebulizer and from 47 to 54% in case of DPI. In vivo deposition of voriconazole in lungs was found to be 80-130 µg/g of lung tissue in case of DPI and 40-68 µg/g of lung tissue in case of using nebulizer.
DPI designed was efficient in fluidizing powder bed and dispensing dry powder for inhalation. The inhalation chamber designed was efficient in uniformly distributing drug in various inhalation ports of the chamber.
The DPI and inhalation chamber designed can be successfully used for inhalation study with multiple animals especially mice.
肺部给药途径在肺部和呼吸道中越来越受到关注,用于局部和全身作用的药物输送。
设计了一种用于输送干粉的干粉吸入器(DPI)和一种仅用于鼻腔的小动物吸入室,可与雾化器/DPI 一起使用。
吸入室由聚丙烯-矩形盒和离心管制成。DPI 由聚丙烯管制成。使用微米化伏立康唑和伏立康唑溶液分别用于 DPI 和雾化器,用于体外和体内研究。
发现雾化器的体外药物沉积率为 11-26%w/w,DPI 的药物沉积率为 42-57%w/w,具体取决于实验设置。无论使用哪种方法,所有吸入端口的沉积都均匀。雾化器的呼吸分数(RF)为 34-73%,DPI 的呼吸分数为 47-54%。在体内研究中,DPI 组肺部的伏立康唑沉积量为 80-130µg/g 肺组织,而使用雾化器组的沉积量为 40-68µg/g 肺组织。
设计的 DPI 能够有效地流化粉末床并分配干粉进行吸入。设计的吸入室能够有效地将药物均匀分布到吸入室的各个吸入端口。
设计的 DPI 和吸入室可成功用于多只动物(尤其是小鼠)的吸入研究。