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Biology subjects

Van Braeckel, E.

Publications and source records attributed to Van Braeckel, E..

2 recordsLinked to original sources

Beyond a binary view of cystic fibrosis: systemic immunity and inflammation across the spectrum of CFTR dysfunction

Cystic fibrosis is traditionally framed as a dichotomy between affected individuals and clinically unaffected carriers, yet the systemic immune consequences across the spectrum of CFTR functionality remain incompletely defined. The advent of highly effective CFTR modulators now provides a unique momentum to examine whether partial restoration of CFTR function can influence systemic immunity. Using multimodal immune profiling, we constructed a single-cell atlas of circulating immune cells in people with cystic fibrosis (pwCF), healthy F508del carriers and non-carriers. In pwCF, systemic immunity was markedly altered following in vivo CFTR modulation with elexacaftor-tezacaftor-ivacaftor, with broad reductions in pro-inflammatory cytokines linked to improved clinical outcomes. Notably, healthy F508del carriers exhibited a CF-like immune signature characterised by low-grade systemic inflammation, including elevated IL-6, reduced mucosal-associated invariant T cells, and inflammatory monocyte features overlapping with pwCF. Together, these findings show that CFTR-related immune dysregulation extends beyond classical cystic fibrosis, challenging a strict dichotomy between health and disease.

immunology↗

Identification of DksA as a novel pro-inflammatory mediator of Pseudomonas aeruginosa under conditions mimicking chronic cystic fibrosis lung infection

Chronic infection with Pseudomonas aeruginosa is a major driver of airway inflammation, which plays a central role in the progression of cystic fibrosis (CF) lung disease. During long-term colonization, P. aeruginosa adapts to the CF lung by downregulating virulence factors and adopting a biofilm-associated, mucoid lifestyle. Despite the expected reduction in immune activation due to these adaptations, excessive inflammation persists, a paradox that remains poorly understood. Our objective was to identify novel bacterial mediators sustaining persistent inflammation by P. aeruginosa in the CF lung. To this end, we analyzed clinical P. aeruginosa CF isolates, cultured them in synthetic CF sputum medium, and exposed 3D lung epithelial cell cultures to the resulting cell-free supernatants. There was considerable variability in pro-inflammatory activity among the isolates, with a subset of the isolates inducing strong IL-8 secretion by the 3D cells despite low production of known virulence factors. Comparative proteomics analysis of the cell-free supernatants of pro- and anti-inflammatory isolates revealed several mediators not previously linked to inflammation. Thirteen of these candidate pro-inflammatory mediators were selected for further analysis. Using P. aeruginosa transposon mutants lacking the respective mediators, DksA (a transcription factor) was confirmed as an immunomodulatory mediator in the 3D lung model. Finally, analysis of existing transcriptomes of P. aeruginosa in CF sputum, revealed that dksA was found to be one of the most strongly expressed genes in this patient population, highlighting the relevance of our findings. In conclusion, we identified a novel P. aeruginosa mediator that may contribute to CF airway inflammation.

microbiology↗