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New Pseudomonas infections drive Pf phage transmission in CF airways
by
Haddock, Naomi L.
, Schmidt, Amelia K.
, Pourtois, Julie D.
, Gupta, Aditi
, Jain, Ronit
, Prakash, Prema S.
, Milla, Carlos
, Bollyky, Paul L.
, Fleming, Piper
, Martinez, Hunter A.
, De Leo, Giulio A.
, Burgener, Elizabeth B.
, Khosravi, Arya
, Chang, Tony H.
, Secor, Patrick R.
in
Antibiotics
/ Bacteria
/ Bacterial infections
/ Bacteriophages - genetics
/ Clinical isolates
/ Cystic fibrosis
/ Cystic Fibrosis - complications
/ Cystic Fibrosis - microbiology
/ Disease transmission
/ Female
/ Horizontal transfer
/ Humans
/ Infectious disease
/ Male
/ Microbiology
/ Phages
/ Pseudomonas
/ Pseudomonas aeruginosa - genetics
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - pathogenicity
/ Pseudomonas aeruginosa - virology
/ Pseudomonas Infections - microbiology
/ Pseudomonas Infections - transmission
/ Pseudomonas Infections - virology
/ Pseudomonas Phages - genetics
/ Pseudomonas Phages - pathogenicity
/ Respiratory tract
/ Strains (organisms)
/ Virulence
2025
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New Pseudomonas infections drive Pf phage transmission in CF airways
by
Haddock, Naomi L.
, Schmidt, Amelia K.
, Pourtois, Julie D.
, Gupta, Aditi
, Jain, Ronit
, Prakash, Prema S.
, Milla, Carlos
, Bollyky, Paul L.
, Fleming, Piper
, Martinez, Hunter A.
, De Leo, Giulio A.
, Burgener, Elizabeth B.
, Khosravi, Arya
, Chang, Tony H.
, Secor, Patrick R.
in
Antibiotics
/ Bacteria
/ Bacterial infections
/ Bacteriophages - genetics
/ Clinical isolates
/ Cystic fibrosis
/ Cystic Fibrosis - complications
/ Cystic Fibrosis - microbiology
/ Disease transmission
/ Female
/ Horizontal transfer
/ Humans
/ Infectious disease
/ Male
/ Microbiology
/ Phages
/ Pseudomonas
/ Pseudomonas aeruginosa - genetics
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - pathogenicity
/ Pseudomonas aeruginosa - virology
/ Pseudomonas Infections - microbiology
/ Pseudomonas Infections - transmission
/ Pseudomonas Infections - virology
/ Pseudomonas Phages - genetics
/ Pseudomonas Phages - pathogenicity
/ Respiratory tract
/ Strains (organisms)
/ Virulence
2025
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New Pseudomonas infections drive Pf phage transmission in CF airways
by
Haddock, Naomi L.
, Schmidt, Amelia K.
, Pourtois, Julie D.
, Gupta, Aditi
, Jain, Ronit
, Prakash, Prema S.
, Milla, Carlos
, Bollyky, Paul L.
, Fleming, Piper
, Martinez, Hunter A.
, De Leo, Giulio A.
, Burgener, Elizabeth B.
, Khosravi, Arya
, Chang, Tony H.
, Secor, Patrick R.
in
Antibiotics
/ Bacteria
/ Bacterial infections
/ Bacteriophages - genetics
/ Clinical isolates
/ Cystic fibrosis
/ Cystic Fibrosis - complications
/ Cystic Fibrosis - microbiology
/ Disease transmission
/ Female
/ Horizontal transfer
/ Humans
/ Infectious disease
/ Male
/ Microbiology
/ Phages
/ Pseudomonas
/ Pseudomonas aeruginosa - genetics
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - pathogenicity
/ Pseudomonas aeruginosa - virology
/ Pseudomonas Infections - microbiology
/ Pseudomonas Infections - transmission
/ Pseudomonas Infections - virology
/ Pseudomonas Phages - genetics
/ Pseudomonas Phages - pathogenicity
/ Respiratory tract
/ Strains (organisms)
/ Virulence
2025
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New Pseudomonas infections drive Pf phage transmission in CF airways
Journal Article
New Pseudomonas infections drive Pf phage transmission in CF airways
2025
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Overview
Pf bacteriophages, lysogenic viruses that infect Pseudomonas aeruginosa (Pa), are implicated in the pathogenesis of chronic Pa infections; phage-infected (Pf+) strains are known to predominate in people with cystic fibrosis (pwCF) who are older and have more severe disease. However, the transmission patterns of Pf underlying the progressive dominance of Pf+ strains are unclear. In particular, it is unknown whether phage transmission commonly occurs horizontally between bacteria via viral particles within the airway or whether Pf+ bacteria are mostly acquired via de novo Pseudomonas infections. Here, we studied Pa genomic sequences from 3 patient cohorts totaling 662 clinical isolates from 105 pwCF. We identified Pf+ isolates and analyzed transmission patterns of Pf within patients between genetically similar groups of bacteria called \"clone types.\" We found that Pf was predominantly passed down vertically within Pa clone types and rarely via horizontal transfer between clone types within the airway. Conversely, we found extensive evidence of Pa de novo infection by a new, genetically distinct Pf+ Pa. Finally, we observed that clinical isolates showed reduced activity of type IV pili and reduced susceptibility to Pf in vitro. These results cast light on the transmission of virulence-associated phages in the clinical setting.
Publisher
American Society for Clinical Investigation,American Society for Clinical investigation
Subject
/ Bacteria
/ Cystic Fibrosis - complications
/ Cystic Fibrosis - microbiology
/ Female
/ Humans
/ Male
/ Phages
/ Pseudomonas aeruginosa - genetics
/ Pseudomonas aeruginosa - isolation & purification
/ Pseudomonas aeruginosa - pathogenicity
/ Pseudomonas aeruginosa - virology
/ Pseudomonas Infections - microbiology
/ Pseudomonas Infections - transmission
/ Pseudomonas Infections - virology
/ Pseudomonas Phages - genetics
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