Airway Microbiota and Pathogen Abundance in Age-Stratified Cystic Fibrosis Patients

Микробиота дыхательных путей и численность патогенов у пациентов с муковисцидозом, стратифицированных по возрасту
Eoin Brodie, Gary L. Andersen, Susan V. Lynch, Michael J. Cox, Jonathan L. Koff, Ulaş Karaöz, Rebecca A. Daly, Martin Allgaier, Ronald C. Brown, Byron Taylor, Marshall Baek, Yvonne J. Huang, Kei E. Fujimura, Brian H. Wu, Diem Tran, Mary Ellen Kleinhenz, Dennis W. Nielson
2010-06-23

CFTR genotype-specific communitiesage-stratified patientscystic fibrosis airway microbiotaphylogenetic microarraypulmonary function
Bacterial communities in the airways of cystic fibrosis (CF) patients are, as in other ecological niches, influenced by autogenic and allogenic factors. However, our understanding of microbial colonization in younger versus older CF airways and the association with pulmonary function is rudimentary at best. Using a phylogenetic microarray, we examine the airway microbiota in age stratified CF patients ranging from neonates (9 months) to adults (72 years). From a cohort of clinically stable patients, we demonstrate that older CF patients who exhibit poorer pulmonary function possess more uneven, phylogenetically-clustered airway communities, compared to younger patients. Using longitudinal samples collected form a subset of these patients a pattern of initial bacterial community diversification was observed in younger patients compared with a progressive loss of diversity over time in older patients. We describe in detail the distinct bacterial community profiles associated with young and old CF patients with a particular focus on the differences between respective "early" and "late" colonizing organisms. Finally we assess the influence of Cystic Fibrosis Transmembrane Regulator (CFTR) mutation on bacterial abundance and identify genotype-specific communities involving members of the Pseudomonadaceae, Xanthomonadaceae, Moraxellaceae and Enterobacteriaceae amongst others. Data presented here provides insights into the CF airway microbiota, including initial diversification events in younger patients and establishment of specialized communities of pathogens associated with poor pulmonary function in older patient populations.
1
CFTR genotype influenced bacterial abundance and was associated with genotype-specific communities involving Pseudomonadaceae, Xanthomonadaceae, Moraxellaceae, and Enterobacteriaceae.
2
Longitudinal sampling showed initial bacterial community diversification in younger patients but progressive diversity loss over time in older patients.
3
Older cystic fibrosis patients with poorer pulmonary function had more uneven and phylogenetically clustered airway microbial communities than younger patients.
4
Specialized pathogen communities were established in older patients and associated with poor pulmonary function.
5
Young and old patients exhibited distinct airway microbiota profiles, including differences in early- versus late-colonizing organisms.

Airway microbiota of age-stratified cystic fibrosis patients

Age-related patterns of bacterial colonization, community diversity and phylogenetic structure, pathogen abundance, and their associations with pulmonary function and CFTR genotype

Publication Details
Publication Date
2010-06-23
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Eoin Brodie
Gary L. Andersen
Susan V. Lynch
Michael J. Cox
Jonathan L. Koff
Ulaş Karaöz
Rebecca A. Daly
Martin Allgaier
Ronald C. Brown
Byron Taylor
Marshall Baek
Yvonne J. Huang
Kei E. Fujimura
Brian H. Wu
Diem Tran
Mary Ellen Kleinhenz
Dennis W. Nielson
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%