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Published on: March 17, 2014
Long-Term Lung Function and Pseudomonas aeruginosa Infection in Genotyped Primary Ciliary Dyskinesia
Mathias G Holgersen1, June K Marthin1, Johanna Raidt2,3,4
1Paediatric Pulmonary Service, Department of Paediatrics and Adolescent Medicine.
Abstract:
Rationale: Primary ciliary dyskinesia (PCD) is a rare genetic disorder characterized by progressive lung disease. Pseudomonas aeruginosa is a major pathogen in this disease and is known to impact lung function. Previous genotype-phenotype studies have been limited by cross-sectional designs, isolated adult or pediatric populations, small numbers, or short follow-up durations. Objectives: We aimed to explore long-term lung function in PCD grouped by genotypes and ultrastructural defects, considering the influence of P. aeruginosa. Methods: In this retrospective observational study, we analyzed 43 years of spirometry and 20 years of microbiology data. Using linear mixed-effects models, we estimated forced expiratory volume in 1 second z-score trends and compared them at ages 10, 25, and 50 years, whereas generalized estimating equations were used to assess P. aeruginosa prevalence between groups. In a secondary analysis, we matched spirometry and microbiology samples to evaluate the influence of P. aeruginosa on lung function. Results: We included 127 genotyped patients, 6,691 spirometry measurements, and 10,082 microbiology samples. CCDC39 and CCDC40 variants showed early-onset and sustained decline in lung function, whereas DNAH11 and HYDIN variants demonstrated relative stability. Lung function in the proximity of positive P. aeruginosa cultures was on average 0.06 z-score lower. Despite this, differences between groups remained largely unaffected by P. aeruginosa. Conclusions: Long-term lung function in PCD follows discrete genotype-specific profiles and appears independent of P. aeruginosa infection. We confirm and extend previous findings of CCDC39 and CCDC40 as variants associated with early-onset severe lung function impairment persisting in the long term.
Insights
Primary ciliary dyskinesia (PCD) lung function decline varies by genetic mutations, with CCDC39 and CCDC40 variants showing sustained impairment. Pseudomonas aeruginosa infection did not significantly impact these long-term lung function profiles.
Area of Science:
- Medical Genetics
- Pulmonology
- Infectious Disease
Background:
- Primary ciliary dyskinesia (PCD) is a rare genetic disorder causing progressive lung disease.
- Pseudomonas aeruginosa is a significant pathogen in PCD, impacting lung function.
- Previous PCD genotype-phenotype studies had limitations in design and population scope.
Purpose of the Study:
- To investigate long-term lung function trajectories in PCD based on specific genotypes and ultrastructural defects.
- To assess the influence of Pseudomonas aeruginosa infection on lung function in different PCD genetic groups.
Main Methods:
- Retrospective analysis of 43 years of spirometry and 20 years of microbiology data from 127 genotyped PCD patients.
- Linear mixed-effects models used to estimate forced expiratory volume in 1 second (FEV1) z-score trends.
- Generalized estimating equations assessed P. aeruginosa prevalence and its impact on lung function.
Main Results:
- CCDC39 and CCDC40 variants were associated with early-onset, sustained lung function decline.
- DNAH11 and HYDIN variants showed relatively stable lung function over time.
- Lung function was marginally lower near P. aeruginosa detection, but overall genotype differences were not significantly affected by the infection.
Conclusions:
- Long-term lung function in PCD exhibits distinct genotype-specific patterns.
- Lung function decline in PCD appears largely independent of Pseudomonas aeruginosa infection.
- CCDC39 and CCDC40 variants are confirmed as major contributors to severe, persistent lung function impairment in PCD.
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