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The lysogenic filamentous Pseudomonas bacteriophage phage Pf slows mucociliary transport
Elizabeth B Burgener1,2, Pamela C Cai3, Michael J Kratochvil4
1Department of Pediatrics, Center for Excellence in Pulmonary Biology, Stanford University, Stanford, CA 94305, USA.
Abstract:
Pseudomonas aeruginosa is a major pulmonary pathogen causing chronic pulmonary infections in people with cystic fibrosis (CF). The P. aeruginosa filamentous and lysogenic bacteriophage, Pf phage, is abundant in the airways of many people with CF and has been associated with poor outcomes in a cross-sectional cohort study. Previous studies have identified roles for Pf phage in biofilm formation, specifically forming higher-order birefringent, liquid crystals when in contact with other biopolymers in biofilms. Liquid crystalline biofilms are more adherent and viscous than those without liquid crystals. A key feature of biofilms is to enhance bacterial adherence and resist physical clearance. The effect of Pf phage on mucociliary transport is unknown. We found that primary CF and non-CF nasal epithelial cells cultured at air-liquid interface treated with Pf phage exhibit liquid crystalline structures in the overlying mucus. On these cell cultures, Pf phage entangles cilia but does not affect ciliary beat frequency. In both these in vitro cell cultures and in an ex vivo porcine trachea model, introduction of Pf phage decreases mucociliary transport velocity. Pf phage also blocks the rescue of mucociliary transport by CF transmembrane conductance regulator modulators in CF cultures. Thus, Pf phage may contribute to the pathogenesis of P. aeruginosa-associated CF lung disease via induction of liquid crystalline characteristics to airway secretions, leading to impaired mucociliary transport. Targeting Pf phage may be useful in treatment CF as well as other settings of chronic P. aeruginosa infections.
Insights
Pseudomonas aeruginosa
Area of Science:
- Pulmonary Medicine
- Microbiology
- Biophysics
Background:
- Pseudomonas aeruginosa is a major cause of chronic lung infections in cystic fibrosis (CF).
- Pf phage, a bacteriophage of P. aeruginosa, is prevalent in CF airways and linked to worse patient outcomes.
- Pf phage contributes to biofilm formation, creating liquid crystalline structures that enhance adherence and viscosity.
Purpose of the Study:
- To investigate the effect of Pf phage on mucociliary transport in the airways.
- To determine if Pf phage impacts cilia function and mucus properties.
Main Methods:
- Utilized primary human nasal epithelial cells (CF and non-CF) cultured at air-liquid interface.
- Applied Pf phage to cell cultures and an ex vivo porcine trachea model.
- Assessed changes in mucus structure, ciliary beat frequency, and mucociliary transport velocity.
Main Results:
- Pf phage induced liquid crystalline structures in mucus and entangled cilia without altering ciliary beat frequency.
- Mucociliary transport velocity was significantly decreased in the presence of Pf phage in both in vitro and ex vivo models.
- Pf phage inhibited the therapeutic effect of CFTR modulators on mucociliary transport in CF cultures.
Conclusions:
- Pf phage contributes to P. aeruginosa pathogenesis in CF lung disease by promoting liquid crystalline mucus and impairing mucociliary transport.
- Targeting Pf phage presents a potential therapeutic strategy for CF and other chronic P. aeruginosa infections.
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