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PMID: 38362183 Published · epublish English Journal Article

Inhaled fosamprenavir for laryngopharyngeal reflux: Toxicology and fluid dynamics modeling.

Laryngoscope investigative otolaryngology ·Vol. 9 ·No. 1 ·2024-02-00 ·页码 e1219

Lesnick A, Samuels TL, Seabloom D, Wuertz B, Ojha A, Seelig D, Ondrey F, Wiedmann TS, Hogan C, Torii E, Ouyang H, Yan K, Garcia GJM, Bock JM, Johnston N

Abstract

Approximately 25% of Americans suffer from laryngopharyngeal reflux (LPR), a disease for which no effective medical therapy exists. Pepsin is a predominant source of damage during LPR and a key therapeutic target. Fosamprenavir (FOS) inhibits pepsin and prevents damage in an LPR mouse model. Inhaled FOS protects at a lower dose than oral; however, the safety of inhaled FOS is unknown and there are no inhalers for laryngopharyngeal delivery. A pre-Good Lab Practice (GLP) study of inhaled FOS was performed to assess safety and computational fluid dynamics (CFD) modeling used to predict the optimal particle size for a laryngopharyngeal dry powder inhaler (DPI). Aerosolized FOS, amprenavir (APR), or air (control) were provided 5 days/week for 4 weeks (n = 6) in an LPR mouse model. Organs (nasal cavity, larynx, esophagus, trachea, lung, liver, heart, and kidney) were assessed by a pathologist and bronchoalveolar lavage cytokines and plasma cardiotoxicity markers were assessed by Luminex assay. CFD simulations were conducted in a model of a healthy 49-year-old female. No significant increase was observed in histologic lesions, cytokines, or cardiotoxicity markers in FOS or APR groups relative to the control. CFD predicted that laryngopharyngeal deposition was maximized with aerodynamic diameters of 8.1-11.5 μm for inhalation rates of 30-60 L/min. A 4-week pre-GLP study supports the safety of inhaled FOS. A formal GLP assessment is underway to support a phase I clinical trial of an FOS DPI for LPR. NA.

Keywords
computational fluid dynamics dry powder inhaler laryngopharyngeal delivery laryngopharyngeal reflux pepsin
作者与单位
共 15 位作者,点击展开单位 / ORCID
Lesnick Alexandra ORCID
Otolaryngology and Communication Sciences Medical College of Wisconsin Milwaukee Wisconsin USA.
Samuels Tina L ORCID
Otolaryngology and Communication Sciences Medical College of Wisconsin Milwaukee Wisconsin USA.
Seabloom Donna
Otolaryngology Head and Neck Surgery University of Minnesota Minneapolis Minnesota USA.
Wuertz Beverly
Otolaryngology Head and Neck Surgery University of Minnesota Minneapolis Minnesota USA.
Ojha Abhilash
Mechanical Engineering University of Minnesota Minneapolis Minnesota USA.
Seelig Davis
Comparative Pathology Shared Resource Masonic Cancer Center, University of Minnesota Minneapolis Minnesota USA.
Ondrey Frank
Otolaryngology Head and Neck Surgery University of Minnesota Minneapolis Minnesota USA.
Wiedmann Timothy S
Pharmaceutics University of Minnesota Minneapolis Minnesota USA.
Hogan Chris
Mechanical Engineering University of Minnesota Minneapolis Minnesota USA.
Torii Emma
Comparative Pathology Shared Resource Masonic Cancer Center, University of Minnesota Minneapolis Minnesota USA.
Ouyang Hui
Mechanical Engineering University of Texas-Dallas Dallas Texas USA.
Yan Ke
Pediatrics Quantitative Health Sciences Medical College of Wisconsin Milwaukee Wisconsin USA.
Garcia Guilherme J M ORCID
Otolaryngology and Communication Sciences Medical College of Wisconsin Milwaukee Wisconsin USA. | Biomedical Engineering Medical College of Wisconsin Milwaukee Wisconsin USA.
Bock Jonathan M ORCID
Otolaryngology and Communication Sciences Medical College of Wisconsin Milwaukee Wisconsin USA.
Johnston Nikki
Otolaryngology and Communication Sciences Medical College of Wisconsin Milwaukee Wisconsin USA. | Microbiology and Immunology Medical College of Wisconsin Milwaukee Wisconsin USA.
Article Info
Journal
Laryngoscope investigative otolaryngology
Abbr.
Laryngoscope Investig Otolaryngol
ISSN
2378-8038
Published
2024-02-00
电子出版
2024-00-24
页码
e1219
Language
English
Country/Region
United States
NLM ID
101684963
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