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Long Term Chronic Pseudomonas aeruginosa Airway Infection in Mice
Published on: March 17, 2014
Genomic and Functional Characterization of Longitudinal Pseudomonas aeruginosa Isolates from Young Patients with
Courtney E Chandler1, Casey E Hofstaedter1,2, Tracy H Hazen3,4
1Department of Microbial Pathogenesis, University of Maryland-Baltimore, Baltimore, Maryland, USA.
Abstract:
Individuals with cystic fibrosis (CF) suffer from frequent and recurring microbial airway infections. The Gram-negative bacterium Pseudomonas aeruginosa is one of the most common organisms isolated from CF patient airways. P. aeruginosa establishes chronic infections that persist throughout a patient's lifetime and is a major cause of morbidity and mortality. Throughout the course of infection, P. aeruginosa must evolve and adapt from an initial state of early, transient colonization to chronic colonization of the airways. Here, we examined isolates of P. aeruginosa from children under the age of 3 years old with CF to determine genetic adaptations the bacterium undergoes during this early stage of colonization and infection. These isolates were collected when early aggressive antimicrobial therapy was not the standard of care and therefore highlight strain evolution under limited antibiotic pressure. Examination of specific phenotypic adaptations, such as lipid A palmitoylation, antibiotic resistance, and loss of quorum sensing, did not reveal a clear genetic basis for such changes. Additionally, we demonstrate that the geography of patient origin, within the United States or among other countries, does not appear to significantly influence genetic adaptation. In summary, our results support the long-standing model that patients acquire individual isolates of P. aeruginosa that subsequently become hyperadapted to the patient-specific airway environment. This study provides a multipatient genomic analysis of isolates from young CF patients in the United States and contributes data regarding early colonization and adaptation to the growing body of research about P. aeruginosa evolution in the context of CF airway disease. IMPORTANCE Chronic lung infection with Pseudomonas aeruginosa is of major concern for patients with cystic fibrosis (CF). During infection, P. aeruginosa undergoes genomic and functional adaptation to the hyperinflammatory CF airway, resulting in worsening lung function and pulmonary decline. All studies that describe these adaptations use P. aeruginosa obtained from older children or adults during late chronic lung infection; however, children with CF can be infected with P. aeruginosa as early as 3 months of age. Therefore, it is unclear when these genomic and functional adaptations occur over the course of CF lung infection, as access to P. aeruginosa isolates in children during early infection is limited. Here, we present a unique cohort of CF patients who were identified as being infected with P. aeruginosa at an early age prior to aggressive antibiotic therapy. Furthermore, we performed genomic and functional characterization of these isolates to address whether chronic CF P. aeruginosa phenotypes are present during early infection.
Insights
Pseudomonas aeruginosa in cystic fibrosis (CF) airways adapts to the patient’s unique environment. This study analyzed early-stage CF patient isolates, revealing patient-specific adaptation rather than geographic influence.
Area of Science:
- Microbiology and Infectious Diseases
- Genomics and Evolutionary Biology
- Cystic Fibrosis Research
Background:
- Cystic fibrosis (CF) patients experience recurrent airway infections, primarily by Pseudomonas aeruginosa.
- P. aeruginosa establishes chronic infections, leading to significant morbidity and mortality in CF patients.
- Understanding early bacterial adaptation is crucial, but data from young children is limited.
Purpose of the Study:
- To investigate the genetic adaptations of P. aeruginosa during the early stages of colonization in young children with CF.
- To analyze P. aeruginosa isolates from children under 3 years old, collected before aggressive antimicrobial therapy.
- To determine if early-stage isolates exhibit adaptations typically seen in chronic infections.
Main Methods:
- Genomic analysis of P. aeruginosa isolates from young CF patients in the United States.
- Examination of specific phenotypic adaptations, including lipid A palmitoylation and antibiotic resistance.
- Assessment of quorum sensing gene expression and geographical influence on genetic adaptation.
Main Results:
- No clear genetic basis was found for specific phenotypic adaptations like lipid A palmitoylation or loss of quorum sensing in early isolates.
- Geographical origin (US vs. international) did not significantly influence the genetic adaptation patterns of P. aeruginosa.
- Results support the model of individual P. aeruginosa isolates hyperadapting to patient-specific airway environments.
Conclusions:
- P. aeruginosa undergoes patient-specific hyperadaptation in the CF airway environment, even during early colonization.
- This study provides valuable genomic data on early P. aeruginosa adaptation in young CF patients.
- Findings contribute to understanding the evolution of P. aeruginosa in the context of CF lung disease.
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