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The Lung Microbiome in Young Children with Cystic Fibrosis: A Prospective Cohort Study
Barry Linnane1,2, Aaron M Walsh3,4, Calum J Walsh3,4
1Centre for Interventions in Infection, Inflammation and Immunity (4i) and Graduate Entry Medical School, University of Limerick, Limerick V94 T9PX, Ireland.
Insights
The cystic fibrosis (CF) lung microbiome in pre-schoolers is distinct, with reduced diversity correlating with inflammation. Early life interventions may be crucial for managing CF lung health.
Area of Science:
- Microbiology
- Pediatric Pulmonology
- Genomics
Background:
- Reduced lung microbiome diversity in cystic fibrosis (CF) is linked to age, inflammation, and poor lung function.
- Early intervention is critical in CF, but research on the lung microbiome in young children is limited.
Purpose of the Study:
- To comprehensively characterize the lower airway microbiome in pre-school children with CF.
- To identify differences in the CF lung microbiome compared to non-CF children.
Main Methods:
- Collected annual bronchoalveolar lavage (BAL) samples from 101 children with CF and 51 controls.
- Performed 16S rRNA gene sequencing on the Illumina MiSeq platform.
- Analyzed data using Qiime and R, correlating microbiome data with clinical and inflammatory markers.
Main Results:
- The CF lung microbiome is distinct from non-CF controls, though alpha diversity was similar in pre-schoolers.
- CF diagnosis explained minimal variation; however, key genera differed significantly.
- Lung microbiome diversity decreased with age in CF, unlike in controls, with increased Pseudomonas and Staphylococcus.
- Lower diversity correlated negatively with interleukin-8 and neutrophil elastase in CF patients.
- Antibiotic prophylaxis or exposure did not correlate with microbiome diversity.
Conclusions:
- The pediatric CF lung microbiome exhibits unique characteristics early in life.
- Age-related changes in microbial composition occur in CF lungs.
- Early-life microbiome alterations may impact CF lung disease progression.
Abstract:
The cystic fibrosis (CF) lung harbours a diverse microbiome and reduced diversity in the CF lung has been associated with advancing age, increased inflammation and poorer lung function. Data suggest that the window for intervention is early in CF, yet there is a paucity of studies on the lung microbiome in children with CF. The objective of this study was to thoroughly characterise the lower airway microbiome in pre-school children with CF. Bronchoalveolar lavage (BAL) samples were collected annually from children attending the three clinical centres. Clinical and demographic data were collated on all subjects alongside BAL inflammatory markers. 16S rRNA gene sequencing was performed on the Illumina MiSeq platform. Bioinformatics and data analysis were performed using Qiime and R project software. Data on 292 sequenced BALs from 101 children with CF and 51 without CF show the CF lung microbiome, while broadly similar to that in non-CF children, is distinct. Alpha diversity between the two cohorts was indistinguishable at this early age. The CF diagnosis explained only 1.1% of the variation between the cohort microbiomes. However, several key genera were significantly differentially abundant between the groups. While the non-CF lung microbiome diversity increased with age, diversity reduced in CF with age. Pseudomonas and Staphylococcus were more abundant with age, while genera such as Streptococcus, Porphyromonas and Veillonella were less abundant with age. There was a negative correlation between alpha diversity and interleukin-8 and neutrophil elastase in the CF population. Neither current flucloxacillin or azithromycin prophylaxis, nor previous oral or IV antibiotic exposure, was correlated with microbiome diversity. Consecutive annual BAL samples over 5 years from a subgroup of children demonstrated diverse patterns of development in the first years of life.
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