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PMID: 36087437 Published · ppublish English Journal Article

CFD simulation of porous microsphere particles in the airways of pulmonary fibrosis.

Computer methods and programs in biomedicine ·Vol. 225 ·2022-10-00 ·页码 107094

Qin Z, Shi Y, Qiao J, Lin G, Tang B, Li X, Zhang J

Abstract

Pulmonary fibrosis (PF) is a chronic progressive disease with an extremely high mortality rate and is a complication of COVID-19. Inhalable microspheres have been increasingly used in the treatment of lung diseases such as PF in recent years. Compared to the direct inhalation of drugs, a larger particle size is required to ensure the sustained release of microspheres. However, the clinical symptoms of PF may lead to the easier deposition of microspheres in the upper respiratory tract. Therefore, it is necessary to understand the effects of PF on the deposition of microspheres in the respiratory tract. In this study, airway models with different degrees of PF in humans and mice were established, and the transport and deposition of microspheres in the airway were simulated using computational fluid dynamics. The simulation results showed that PF increases microsphere deposition in the upper respiratory tract and decreases bronchial deposition in both humans and mice. Porous microspheres with low density can ensure deposition in the lower respiratory tract and larger particle size. In healthy and PF humans, porous microspheres of 10 µm with densities of 700 and 400 kg/m³ were deposited most in the bronchi. Unlike in humans, microspheres larger than 4 µm are completely deposited in the upper respiratory tract of mice owing to their high inhalation velocity. For healthy and PF mice, microspheres of 6 µm with densities of and 100 kg/m³ are recommended. The results showed that with the exacerbation of PF, it is more difficult for microsphere particles to deposit in the subsequent airway. In addition, there were significant differences in the deposition patterns among the different species. Therefore, it is necessary to process specific microspheres from different individuals. Our study can guide the processing of microspheres and achieve differentiated drug delivery in different subjects to maximize therapeutic effects.

Keywords
Airway CFD Deposition Porous microspheres Pulmonary drug delivery Pulmonary fibrosis
MeSH 主题词
Animals COVID-19 Computer Simulation Delayed-Action Preparations Humans Lung Mice Microspheres Models, Biological Particle Size Porosity Pulmonary Fibrosis/drug therapy Respiratory Aerosols and Droplets Trachea
化学物质
Delayed-Action Preparations
作者与单位
共 7 位作者,点击展开单位 / ORCID
Qin Zhilong
School of Mechanical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China; Shandong Institute of Mechanical Design and Research, Jinan 250031, China.
Shi Yanbin
School of Mechanical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China; Shandong Institute of Mechanical Design and Research, Jinan 250031, China; School of Arts and Design, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China. Electronic address: [email protected].
Qiao Jinwei
School of Mechanical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China; Shandong Institute of Mechanical Design and Research, Jinan 250031, China.
Lin Guimei
School of Pharmaceutical Science, Shandong University, Jinan 250012, China.
Tang Bingtao
School of Mechanical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China; Shandong Institute of Mechanical Design and Research, Jinan 250031, China.
Li Xuelin
School of Arts and Design, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.
Zhang Jing
Key Laboratory of Modern Preparation of TCM, Jiangxi University of Chinese Medicine, Nanchang 330004, China.
Article Info
Journal
Computer methods and programs in biomedicine
Abbr.
Comput Methods Programs Biomed
ISSN
1872-7565
Corresponding email
Published
2022-10-00
电子出版
2022-00-02
页码
107094
Language
English
Country/Region
Ireland
NLM ID
8506513
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