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Published on: May 16, 2020
CFTR modulators partially restore the epithelial interferome in Aspergillus infection to improve clinical outcome
Sarah L Laverty1, Imogen Felton2, Michelle Casey3
1Imperial Fungal Science Network, Department of Infectious Disease, Imperial College London, UK; Immunology of Infection, Department of Infectious Disease, Imperial College London, UK.
Background:
The impact of CFTR modulator therapy on host immunity and outcomes in people with Cystic Fibrosis (CF)-related Aspergillus lung disease is poorly defined. We aimed to characterise fungal-relevant clinical outcomes post-CFTR modulators and assess effects on the Aspergillus-dependent Type I/III interferome.
Methods:
Biomarkers of Aspergillus-related lung disease (Aspergillus-specific IgE/IgG), anti-fungal and corticosteroid therapy were analysed in a retrospective cohort of people with CF pre and post Elexacaftor/Tezacaftor/Ivacaftor (ETI) modulator therapy. Homozygous F508del (CF) and CFTR TALEN-corrected bronchial epithelial cells (BECs) were challenged with Aspergillus conidia and hyphae in the presence or absence of ETI CFTR modulator therapy with bulk RNA transcriptomics and RT-PCR used to analyse Type I/III interferon genes. Effects of exogenous type I and III interferons on CF-neutrophil antifungal effector function was further characterised.
Findings:
CFTR modulator (ETI) therapy was associated with a significant reduction in Aspergillus biomarkers alongside use of corticosteroid and anti-fungal therapy. In vitro Aspergillus stimulation enriched the Type I/III interferome in CFTR-corrected BECs compared to CF BECs, with ETI therapy partially restoring type I/III interferon gene expression in CF BECs. Administration of exogenous IFNλ1 increased anti-fungal killing in CF neutrophils without increased reactive-oxygen species or neutrophil extracellular trap production.
Interpretation:
CFTR modulators have led to improved clinical outcomes in CF related Aspergillus-related lung disease potentially due to partial restoration of the host antifungal epithelial type I/III interferon response. Exogenous IFNλ1 further improved antifungal killing capacity of CF-neutrophils presenting a plausible future therapeutic strategy.
Funding:
This study was funded by the Cystic Fibrosis Trust (SRC015).
Insights
Cystic Fibrosis Transmembrane conductance Regulator (CFTR) modulators improve Aspergillus lung disease outcomes by restoring the Type I/III interferon response. Exogenous IFNλ1 enhances neutrophil antifungal activity, suggesting a new therapeutic approach.
Area of Science:
- Immunology
- Pulmonology
- Genetics
Background:
- Cystic Fibrosis (CF)-related Aspergillus lung disease impacts host immunity and outcomes, with CFTR modulator therapy effects poorly understood.
- Investigating fungal-specific clinical outcomes and the Aspergillus-dependent Type I/III interferon response post-CFTR modulators is crucial.
Purpose of the Study:
- To characterize clinical outcomes in CF-related Aspergillus lung disease following CFTR modulator therapy.
- To assess the impact of CFTR modulators on the Type I/III interferon response in the context of Aspergillus infection.
Main Methods:
- Retrospective analysis of Aspergillus biomarkers, anti-fungal, and corticosteroid therapy in CF patients pre- and post-Elexacaftor/Tezacaftor/Ivacaftor (ETI) therapy.
- In vitro studies using CF bronchial epithelial cells (BECs) and neutrophils challenged with Aspergillus, with gene expression analysis (RNA transcriptomics, RT-PCR) and assessment of neutrophil effector function.
Main Results:
- ETI therapy correlated with reduced Aspergillus biomarkers and decreased corticosteroid/anti-fungal use.
- Aspergillus stimulation altered Type I/III interferon expression in BECs, with ETI partially restoring it.
- Exogenous IFNλ1 enhanced anti-fungal killing by CF neutrophils without increasing oxidative stress markers.
Conclusions:
- CFTR modulators appear to improve clinical outcomes in CF-related Aspergillus lung disease, potentially by restoring epithelial Type I/III interferon responses.
- Exogenous IFNλ1 demonstrates potential as a therapeutic strategy to enhance neutrophil antifungal capacity in CF patients.
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