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基于流化床设计的新型高剂量干粉吸入器(DPI)的特性研究

Characterization of a New High-Dose Dry Powder Inhaler (DPI) Based on a Fluidized Bed Design.

作者信息

Farkas Dale R, Hindle Michael, Longest P Worth

机构信息

Department of Mechanical and Nuclear Engineering, Virginia Commonwealth University, 401 West Main Street, P.O. Box 843015, Richmond, VA, 23284-3015, USA.

Department of Pharmaceutics, Virginia Commonwealth University, Richmond, VA, USA.

出版信息

Ann Biomed Eng. 2015 Nov;43(11):2804-15. doi: 10.1007/s10439-015-1335-2. Epub 2015 May 19.

Abstract

The objective of this study was to develop a new high-efficiency dry powder inhaler (DPI) that can effectively aerosolize large masses (25-100 mg) of spray dried powder formulations. The DPI was designed to implement a concept similar to a fluidized bed for aerosolization using small mixing balls made of polytetrafluoroethylene along with a larger, hollow dosing sphere filled with the powder. The performance of the fluidized bed DPI was compared, based on emitted dose (ED) and aerosolization efficiency, to other recently developed capsule-based DPIs that were designed to accommodate smaller powder masses (~2-20 mg). The inhalers were tested with spray dried excipient enhanced growth (EEG) formulations that contained an antibiotic (ciprofloxacin) and hygroscopic excipient (mannitol). The new fluidized bed design produced an ED of 71% along with a mass median aerodynamic diameter of 1.53 μm and fine particle fractions <5 and 1 μm of 93 and 36%, respectively, when used to deliver a 100 mg loaded mass of EEG powder with the advantage of not requiring multiple capsules. Surprisingly, performance of the device was further improved by removing the mixing balls from the inhaler and only retaining the dose containment sphere.

摘要

本研究的目的是开发一种新型高效干粉吸入器(DPI),它能够有效地将大量(25 - 100毫克)喷雾干燥粉末制剂雾化。该DPI的设计理念类似于流化床雾化,使用由聚四氟乙烯制成的小混合球以及一个较大的、中空的装有粉末的给药球体。基于发射剂量(ED)和气雾化效率,将流化床DPI的性能与其他最近开发的基于胶囊的DPI进行了比较,后者设计用于容纳较小的粉末量(约2 - 20毫克)。使用含有抗生素(环丙沙星)和吸湿赋形剂(甘露醇)的喷雾干燥赋形剂增强生长(EEG)制剂对吸入器进行了测试。当用于输送100毫克加载量的EEG粉末时,新的流化床设计产生了71%的发射剂量,质量中值空气动力学直径为1.53微米,小于5微米和1微米的细颗粒分数分别为93%和36%,其优点是不需要多个胶囊。令人惊讶的是,通过从吸入器中移除混合球并仅保留剂量容纳球体,该装置的性能得到了进一步改善。

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