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March 28, 2026ERJ Open Research0 citationsOpen Access

Airway epithelial transcriptional response to daily high-dose inhaled corticosteroids in asthma

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MMMandy MenzelLFLaurits FrøssingASAsger Sverrild

Key Points

  • Investigate the changes in airway epithelial gene expression after high-dose inhaled corticosteroid treatment in steroid-free asthma patients.
  • Obtained bronchial brushings from 20 steroid-free asthma patients during bronchoscopy.
  • Conducted mRNA-sequencing before and after six weeks of high-dose budesonide treatment.
  • Analyzed gene expression through weighted gene co-expression network analysis (WGCNA) to identify response-related gene networks.
  • Identified four steroid-response clusters, with one metabolic cluster up-regulated related to oxidative phosphorylation.
  • Three immunologic clusters showed down-regulated gene expression, associated with T cell activation and immune responses.
  • Baseline clinical traits predicted the strength of airway epithelial responses to treatment, suggesting biomarkers for therapy stratification.

Abstract

Rationale Inhaled corticosteroids are the cornerstone of asthma treatment, yet the epithelial pathways mediating their anti-inflammatory effects and their relationship to clinical traits remain incompletely understood. Objective To investigate airway epithelial transcriptomic changes in steroid-free patients with asthma following treatment with high-dose inhaled corticosteroids. Methods Bronchial brushings from 20 steroid-free patients with asthma were obtained during bronchoscopy before and after six weeks of high-dose budesonide treatment and mRNA-sequencing was performed. Airway epithelial gene expression was analysed by weighted gene co-expression network analysis (WGCNA) to identify gene networks and profiles associated with inhaled corticosteroid treatment response. Measurements and Main Results Four steroid-response clusters were identified; one metabolic related to oxidative phosphorylation which was up-regulated and three immunologic associated with T cell activation, immune cell and mast cell responses where gene expression was down-regulated following inhaled corticosteroid treatment. Conclusions In steroid-free patients with asthma, inhaled corticosteroids modulate airway epithelial gene networks by enhancing oxidative phosphorylation and suppressing immune and mast cell pathways. Baseline clinical traits predicted the strength of these responses, suggesting potential biomarkers for stratifying treatment with inhaled corticosteroids in asthma.

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Cite This Study

Menzel et al. (2026) studied this question.

synapsesocial.com/papers/69c772158bbfbc51511e2469https://doi.org/10.1183/23120541.00191-2026
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