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Published on: January 22, 2021
Oxidative stress and abnormal bioactive lipids in early cystic fibrosis lung disease
Bob J Scholte1, Hamed Horati2, Mieke Veltman1
1Erasmus MC, Rotterdam, the Netherlands, Cell Biology; Erasmus MC, Sophia Children Hospital, Pediatric Pulmonology, the Netherlands.
Insights
Early airway inflammation in cystic fibrosis (CF) involves abnormal lipid metabolism. Researchers identified specific lipid biomarkers in bronchoalveolar lavage fluid (BALF) that correlate with lung damage and inflammation in young children with CF.
Area of Science:
- Biochemistry
- Pulmonology
- Pediatrics
Background:
- Airway inflammation in cystic fibrosis (CF) begins early and predicts disease progression.
- Abnormal lipid metabolism in bronchoalveolar lavage fluid (BALF) is implicated in CF lung disease.
- Investigating lipid pathways in pediatric CF patients is crucial for understanding early disease mechanisms.
Purpose of the Study:
- To determine if lipid pathway dysregulation occurs in BALF of children with CF.
- To identify lipid biomarkers for early lung disease detection in CF.
- To uncover potential therapeutic targets for CF lung disease.
Main Methods:
- Lipid profiling of BALF from CF and non-CF children using HPLC-MS/MS.
- Analysis included sphingolipids, oxylipins, isoprostanes, and lysolipids.
- Correlation of lipid levels with chest CT scores and BALF inflammation markers.
Main Results:
- Elevated long-chain to very long-chain ceramide (LCC/VLCC) ratios and lysolipid levels in CF patients.
- LCC/VLCC and lysolipid levels correlated with inflammation and lung damage (CT scores) in CF.
- Oxidative stress marker isoprostane correlated with inflammation and CT scores.
Conclusions:
- Identified novel lipid biomarkers for early cystic fibrosis lung disease.
- These biomarkers may aid in disease monitoring and therapeutic strategies.
- Findings complement existing CFTR modulator therapies.
Background:
Clinical data indicate that airway inflammation in children with cystic fibrosis (CF) arises early, is associated with structural lung damage, and predicts progression. In bronchoalveolar lavage fluid (BALF) from CFTR mutant mice, several aspects of lipid metabolism are abnormal that contributes to lung disease. We aimed to determine whether lipid pathway dysregulation is also observed in BALF from children with CF, to identify biomarkers of early lung disease and potential therapeutic targets.
Methods:
A comprehensive panel of lipids that included Sphingolipids, oxylipins, isoprostanes and lysolipids, all bioactive lipid species known to be involved in inflammation and tissue remodeling, were measured in BALF from children with CF (1-6 years, N = 33) and age-matched non-CF patients with unexplained inflammatory disease (N = 16) by HPLC-MS/MS. Lipid data were correlated with chest CT scores and BALF inflammation biomarkers.
Results:
The ratio of long chain to very long chain ceramide species (LCC/VLCC) and lysolipid levels were enhanced in CF compared to non-CF patients, despite comparable neutrophil counts and bacterial load. In CF patients both LCC/VLCC and lysolipid levels correlated with inflammation and chest CT scores. The ceramide precursors Sphingosine, Sphinganine, Sphingomyelin, correlated with inflammation, whilst the oxidative stress marker isoprostane correlated with inflammation and chest CT scores. No correlation between lipids and current bacterial infection in CF (N = 5) was observed.
Conclusions:
Several lipid biomarkers of early CF lung disease were identified, which point toward potential disease monitoring and therapeutic approaches that can be used to complement CFTR modulators.
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