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Published on: May 8, 2017
Microbial Epidemiology of the Cystic Fibrosis Airways: Past, Present, and Future
Christina S Thornton1, Michael D Parkins1,2
1Department of Medicine, Cumming School of Medicine, University of Calgary, Alberta, Canada.
Abstract:
Progressive obstructive lung disease secondary to chronic airway infection, coupled with impaired host immunity, is the leading cause of morbidity and mortality in cystic fibrosis (CF). Classical pathogens found in the airways of persons with CF (pwCF) include Pseudomonas aeruginosa, Staphylococcus aureus, the Burkholderia cepacia complex, Achromobacter species, and Haemophilus influenzae. While traditional respiratory-tract surveillance culturing has focused on this limited range of pathogens, the use of both comprehensive culture and culture-independent molecular approaches have demonstrated complex highly personalized microbial communities. Loss of bacterial community diversity and richness, counteracted with relative increases in dominant taxa by traditional CF pathogens such as Burkholderia or Pseudomonas, have long been considered the hallmark of disease progression. Acquisition of these classic pathogens is viewed as a harbinger of advanced disease and postulated to be driven in part by recurrent and frequent antibiotic exposure driven by frequent acute pulmonary exacerbations. Recently, CF transmembrane conductance regulator (CFTR) modulators, small molecules designed to potentiate or restore diminished protein levels/function, have been successfully developed and have profoundly influenced disease course. Despite the multitude of clinical benefits, structural lung damage and consequent chronic airway infection persist in pwCF. In this article, we review the microbial epidemiology of pwCF, focus on our evolving understanding of these infections in the era of modulators, and identify future challenges in infection surveillance and clinical management.
Insights
Cystic fibrosis (CF) lung infections involve complex microbial communities, not just classic pathogens. New CFTR modulators improve treatment, but ongoing research is vital for managing persistent infections and lung damage.
Area of Science:
- Microbiology
- Pulmonology
- Genetics
Background:
- Chronic airway infections and impaired immunity are primary drivers of morbidity and mortality in cystic fibrosis (CF).
- Traditional surveillance in CF airways focused on limited pathogens, but advanced methods reveal complex, personalized microbial communities.
- Loss of microbial diversity and increased dominance of pathogens like Pseudomonas are hallmarks of CF disease progression.
Approach:
- This review examines the microbial epidemiology in CF patients, focusing on the impact of CFTR modulators.
- It synthesizes current understanding of airway infections in the context of evolving treatment landscapes.
- The article highlights challenges in infection surveillance and clinical management for individuals with CF.
Key Points:
- The lung microbiome in CF is highly personalized and dynamic, extending beyond classically recognized pathogens.
- CFTR modulators have transformed CF care but do not eliminate the risk of structural lung damage and chronic infections.
- Understanding the evolving microbial landscape is crucial for optimizing treatment strategies.
Conclusions:
- Despite advancements in CFTR modulator therapy, chronic airway infections remain a significant challenge.
- Future efforts must address persistent structural lung damage and refine infection surveillance and management protocols.
- A comprehensive understanding of the CF microbiome is essential for improving long-term outcomes.
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