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Updated: Feb 26, 2026

Growing a Cystic Fibrosis-Relevant Polymicrobial Biofilm to Probe Community Phenotypes
Published on: April 19, 2024
Association of Antibiotics, Airway Microbiome, and Inflammation in Infants with Cystic Fibrosis
Jessica E Pittman1, Kristine M Wylie1,2, Kathryn Akers1
11 Department of Pediatrics and.
Insights
In infants with cystic fibrosis (CF), lower airway bacterial diversity is linked to reduced inflammation. Prophylactic antibiotics and younger age were associated with decreased microbial diversity in the CF airway.
Area of Science:
- Microbiology
- Pulmonology
- Immunology
Background:
- Cystic Fibrosis (CF) involves impaired airway clearance and bacterial defense, leading to chronic infection and inflammation.
- The early respiratory microbiome in CF and its link to inflammation remain poorly understood.
Purpose of the Study:
- To investigate the bacterial microbiota and inflammatory markers in the respiratory tract of infants with CF.
- To explore the relationship between airway microbiome composition and inflammation in early CF.
Main Methods:
- Prospective observational study of infants with CF from US and Australian centers.
- Analysis of bacterial diversity and load in bronchoalveolar lavage (BAL) fluid and oropharyngeal secretions.
- Measurement of inflammatory markers (IL-8, UNe, ANC) in BAL epithelial lining fluid.
Main Results:
- Shannon diversity correlated between upper and lower airways, though compositions differed.
- Lower microbial diversity observed in younger infants and those on antibiotic prophylaxis.
- Reduced lower airway diversity correlated with lower IL-8 and absolute neutrophil count in BAL.
Conclusions:
- Reduced airway bacterial diversity in infants with CF is associated with prophylactic antibiotic use and younger age.
- Lower diversity in the lower airway correlated with reduced airway inflammation.
- Modulating the respiratory microbiome may impact airway inflammation in infants with CF.
Rationale:
The underlying defect in the cystic fibrosis (CF) airway leads to defective mucociliary clearance and impaired bacterial killing, resulting in endobronchial infection and inflammation that contributes to progressive lung disease. Little is known about the respiratory microbiota in the early CF airway and its relationship to inflammation.
Objectives:
To examine the bacterial microbiota and inflammatory profiles in bronchoalveolar lavage fluid and oropharyngeal secretions in infants with CF.
Methods:
Infants with CF from U.S. and Australian centers were enrolled in a prospective, observational study examining the bacterial microbiota and inflammatory profiles of the respiratory tract. Bacterial diversity and density (load) were measured. Lavage samples were analyzed for inflammatory markers (interleukin 8, unbound neutrophil elastase, and absolute neutrophil count) in the epithelial lining fluid.
Results:
Thirty-two infants (mean age, 4.7 months) underwent bronchoalveolar lavage and oropharyngeal sampling. Shannon diversity strongly correlated between upper and lower airway samples from a given subject, although community compositions differed. Microbial diversity was lower in younger subjects and in those receiving daily antistaphylococcal antibiotic prophylaxis. In lavage samples, reduced diversity correlated with lower interleukin 8 concentration and absolute neutrophil count.
Conclusions:
In infants with CF, reduced bacterial diversity in the upper and lower airways was strongly associated with the use of prophylactic antibiotics and younger age at the time of sampling; less diversity in the lower airway correlated with lower inflammation on bronchoalveolar lavage. Our findings suggest modification of the respiratory microbiome in infants with CF may influence airway inflammation.
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