Pf bacteriophage is associated with decline in lung function in a longitudinal cohort of patients with cystic fibrosis and Pseudomonas airway infection

Elizabeth B. Burgener, Aditi Gupta, Kayo Nakano, Sophia L. Gibbs, Maya E. Sommers, Arya Khosravi, Michelle S. Bach, Colleen Dunn, Jacquelyn Spano, Patrick R. Secor, Lu Tian, Paul L. Bollyky, Carlos E. Milla

Research output: Contribution to journalArticlepeer-review

Abstract

Background: The Pseudomonas filamentous bacteriophage (Pf) infects Pseudomonas aeruginosa (Pa) and is abundant in the airways of many people with cystic fibrosis (CF) (pwCF). We previously demonstrated that Pf promotes biofilm growth, as well as generates liquid crystals that confer biofilms with adhesivity, viscosity and resistance to clearance. Consistent with these findings, the presence of Pf in sputum from pwCF has been linked to chronic Pa infection and more severe exacerbations in a cross-sectional cohort study. Methods: We examined the relationships between Pf and clinical outcomes in a longitudinal study of pwCF. Sputum Pa and Pf concentrations were measured by qPCR, as well cytokines and active neutrophil elastase by standardized assays. Recorded clinical data, including spirometry and microbiological results, were analyzed for associations with Pf. Finally, lung explants from pwCF in this cohort who underwent lung transplantation were examined for presence of liquid crystals within secretions. Results: In explanted lungs from pwCF with known Pf infection we demonstrate areas of birefringence consistent with liquid crystalline structures within the airways. We find that high concentration of Pf in sputum is associated with accelerated loss of lung function, suggesting a potential role for Pf in the pathogenesis of CF lung disease. We also find Pf to associate with increased airway inflammation and an anti-viral cytokine response. Conclusion: Pf may serve as a prognostic biomarker and potential therapeutic target for Pa infections in CF.

Original languageEnglish
JournalJournal of Cystic Fibrosis
DOIs
StateAccepted/In press - 2024

Keywords

  • Bacteriophage
  • Pseudomonas

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