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PMID: 38663643 Published · ppublish English Journal Article

Effects of the deformation and size of the upper airway on the deposition of aerosols.

International journal of pharmaceutics ·Vol. 657 ·2024-05-25 ·页码 124165

Gou D, Zhu Q, Chan HK, Kourmatzis A, Cheng S, Yang R

Abstract

Aerosol drug delivery in the human airway is significantly affected by the morphology and size of the airway. This work developed a CFD-DEM model to simulate and analyze air flow and powder dynamics in combined inhaler-airway systems with different degrees of airway deformation (non-deformed, 50%, and 75% deformed) and sizes (adult, 0.80, and 0.62 scaled). The airways were generated based on a regular airway constructed from the MRI images through finite element method (for deformed airways) or scaling-down (for smaller airways). The airways were connected to Turbuhaler® through a connector. The results showed that under the same flow rate, the variation in the airway geometry and size had a minimum impact on the flow field and powder deposition in the device and the connector. However, deformation caused more particle deposition in the deformed region. Notably, the airway with 50% deformation had the most particles passing through the airway with the largest particle sizes due to its lower air velocity in the deformed area. Reducing airway size resulted in more powder deposition on the airway, particularly at the pharynx and mouth regions. This was because, with the same flow rate, the flow velocity in the smaller airway was higher, causing more particle-wall collisions in the mouth and pharynx regions. More importantly, the deposition efficiency in the 0.62-scaled airway was significantly higher than the other two airways, highlighting the importance of the different administration of aerosol drugs for young children.

Keywords
Airway size CFD-DEM Deformation Dry powder inhalation Upper airway
MeSH 主题词
Aerosols Humans Particle Size Administration, Inhalation Powders Dry Powder Inhalers Drug Delivery Systems Respiratory System Magnetic Resonance Imaging Pharynx/anatomy & histology Adult Computer Simulation
化学物质
Aerosols Powders
作者与单位
共 6 位作者,点击展开单位 / ORCID
Gou Dazhao
School of Materials Science and Engineering, UNSW Sydney, NSW 2052, Australia.
Zhu Qixuan
School of Materials Science and Engineering, UNSW Sydney, NSW 2052, Australia.
Chan Hak-Kim
Advanced Drug Delivery Group, Sydney Pharmacy School, The University of Sydney, NSW 2006, Australia.
Kourmatzis Agisilaos
School of Aerospace, Mechanical and Mechatronic Engineering, The University of Sydney, NSW 2006, Australia.
Cheng Shaokoon
School of Engineering, Macquarie University, NSW 2109, Australia.
Yang Runyu
School of Materials Science and Engineering, UNSW Sydney, NSW 2052, Australia. Electronic address: [email protected].
Article Info
Journal
International journal of pharmaceutics
Abbr.
Int J Pharm
ISSN
1873-3476
Corresponding email
Published
2024-05-25
电子出版
2024-00-24
页码
124165
Language
English
Country/Region
Netherlands
NLM ID
7804127
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