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Updated: Feb 28, 2026

Author Spotlight: Investigating Bacteriophage-Induced Immune Responses in Gnotobiotic Mice
Published on: January 26, 2024
Effect of acute predation with bacteriophage on intermicrobial aggression by Pseudomonas aeruginosa
Patrick R Secor1, Gabriele Sass2, Hasan Nazik2,3,4
1Department of Microbiology, University of Washington, Seattle, Washington, United States of America.
Abstract:
In persons with structural lung disease, particularly those with cystic fibrosis (CF), chronic airway infections cause progressive loss of lung function. CF airways can be colonized by a variety of microorganisms; the most frequently encountered bacterial and fungal pathogens are Pseudomonas aeruginosa and Aspergillus fumigatus, respectively. Co-infection with P. aeruginosa and A. fumigatus often results in a more rapid loss of lung function, indicating that interactions between these pathogens affect infection pathogenesis. There has been renewed interest in the use of viruses (bacteriophage, mycoviruses) as alternatives to antibiotics to treat these infections. In previous work, we found that filamentous Pf bacteriophage produced by P. aeruginosa directly inhibited the metabolic activity of A. fumigatus by binding to and sequestering iron. In the current study, we further examined how filamentous Pf bacteriophage affected interactions between P. aeruginosa and A. fumigatus. Here, we report that the antifungal properties of supernatants collected from P. aeruginosa cultures infected with Pf bacteriophage were substantially less inhibitory towards A. fumigatus biofilms. In particular, we found that acute infection of P. aeruginosa by Pf bacteriophage inhibited the production of the virulence factor pyoverdine. Our results raise the possibility that the reduced production of antimicrobials by P. aeruginosa infected by Pf bacteriophage may promote conditions in CF airways that allow co-infection with A. fumigatus to occur, exacerbating disease severity. Our results also highlight the importance of considering how the use of bacteriophage as therapeutic agents could affect the behavior and composition of polymicrobial communities colonizing sites of chronic infection.
Insights
Bacteriophage infection of Pseudomonas aeruginosa reduces its antimicrobial defenses, potentially worsening co-infections with Aspergillus fumigatus in cystic fibrosis (CF) lung disease. This impacts phage therapy considerations for chronic infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Pulmonary Medicine
Background:
- Chronic airway infections in cystic fibrosis (CF) lead to lung function decline.
- Pseudomonas aeruginosa and Aspergillus fumigatus are key pathogens in CF co-infections.
- Bacteriophage therapy is being explored as an alternative to antibiotics.
Purpose of the Study:
- To investigate how Pf bacteriophage infection affects the interaction between P. aeruginosa and A. fumigatus.
- To understand the impact of bacteriophage on microbial co-infections in CF airways.
Main Methods:
- Culturing P. aeruginosa and A. fumigatus.
- Infecting P. aeruginosa with Pf bacteriophage.
- Analyzing P. aeruginosa culture supernatants for antifungal properties.
- Assessing effects on A. fumigatus biofilms and pyoverdine production.
Main Results:
- Supernatants from Pf bacteriophage-infected P. aeruginosa showed reduced antifungal activity against A. fumigatus biofilms.
- Pf bacteriophage infection inhibited pyoverdine production by P. aeruginosa.
- Reduced pyoverdine may facilitate A. fumigatus co-infection.
Conclusions:
- Pf bacteriophage infection of P. aeruginosa may inadvertently promote A. fumigatus co-infection in CF.
- Therapeutic use of bacteriophages requires careful consideration of their impact on polymicrobial communities.
- Findings highlight potential unintended consequences of phage therapy in chronic infections.

