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PMID: 22723022 Published · ppublish English Comparative Study Journal Article

Effect of device design on the in vitro performance and comparability for capsule-based dry powder inhalers.

The AAPS journal ·Vol. 14 ·No. 4 ·2012-12-00 ·页码 667-76

Shur J, Lee S, Adams W, Lionberger R, Tibbatts J, Price R

Abstract

This study investigated the effect of modifying the design of the Cyclohaler on its aerosolization performance and comparability to the HandiHaler at multiple flow rates. The Cyclohaler and HandiHaler were designated as model test and reference unit-dose, capsule-based dry powder inhalers (DPIs), respectively. The flow field, pressure drop, and carrier particle trajectories within the Cyclohaler and HandiHaler were modeled via computational fluid dynamics (CFD). With the goal of achieving in vitro comparability to the HandiHaler, the CFD results were used to identify key device attributes and to design two modifications of the Cyclohaler (Mod 1 and Mod 2), which matched the specific resistance of the HandiHaler but exhibited different cyclonic flow conditions in the device. Aerosolization performance of the four DPI devices was evaluated by using the reference product's capsule and formulation (Spiriva capsule) and a multistage cascade impactor. The in vitro data showed that Mod 2 provided a closer match to the HandiHaler than the Cyclohaler and Mod 1 at 20, 39, and 55 l/min. The in vitro and CFD results together suggest that matching the resistance of test and reference DPI devices is not sufficient to attain comparable aerosolization performance, and the improved in vitro comparability of Mod 2 to the HandiHaler may be related to the greater degree of similarities of the flow rate of air through the pierced capsule (Q(c)) and the maximum impact velocity of representative carrier particles (V(n)) in the Cyclohaler-based device. This investigation illustrates the importance of enhanced product understanding, in this case through the CFD modeling and in vitro characterization of aerosolization performance, to enable identification and modification of key design features of a test DPI device for achieving comparable aerosolization performance to the reference DPI device.

MeSH 主题词
Administration, Inhalation Aerosols Capsules Drug Carriers/chemistry Drug Delivery Systems Dry Powder Inhalers Equipment Design Hydrodynamics Particle Size Scopolamine Derivatives/administration & dosage Tiotropium Bromide
化学物质
Aerosols Capsules Drug Carriers Scopolamine Derivatives Tiotropium Bromide
作者与单位
共 6 位作者,点击展开单位 / ORCID
Shur Jagdeep
Pharmaceutical Surface Science Research Group, Department of Pharmacy and Pharmacology, University of Bath, Claverton Down, Bath, BA2 7AY, UK.
Lee Sau
Adams Wallace
Lionberger Robert
Tibbatts James
Price Robert
Article Info
Journal
The AAPS journal
Abbr.
AAPS J
ISSN
1550-7416
Published
2012-12-00
电子出版
2012-00-22
页码
667-76
Language
English
Country/Region
United States
NLM ID
101223209
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