Area of research
Physiology · Immunology
Research interest
Research interests include Asthma and respiratory diseases, IL-33, ST2, and ILC Pathways, Eosinophilic Esophagitis, and Delphi Technique in Research.
Stratification of asthma by lipidomic profiling of induced sputum supernatant
Clinical and transcriptomic features of persistent exacerbation‐prone severe asthma in U‐BIOPRED cohort
A multi-omics approach to delineate sputum microbiome-associated asthma inflammatory phenotypes
Instability of sputum molecular phenotypes in U-BIOPRED severe asthma
IL-17–high asthma with features of a psoriasis immunophenotype
Stratification of asthma phenotypes by airway proteomic signatures
Contribution of airway eosinophils in airway wall remodeling in asthma: Role of <i><scp>MMP</scp>‐10</i> and <i><scp>MET</scp></i>
Epithelial dysregulation in obese severe asthmatics with gastro-oesophageal reflux
Epithelial IL-6 trans-signaling defines a new asthma phenotype with increased airway inflammation
“T2-high” in severe asthma related to blood eosinophil, exhaled nitric oxide and serum periostin
Identification and prospective stability of electronic nose (eNose)–derived inflammatory phenotypes in patients with severe asthma
Sputum proteomics and airway cell transcripts of current and ex-smokers with severe asthma in U-BIOPRED: an exploratory analysis
A computational framework for complex disease stratification from multiple large-scale datasets
Enhanced oxidative stress in smoking and ex-smoking severe asthma in the U-BIOPRED cohort
Large-Scale Label-Free Quantitative Mapping of the Sputum Proteome
T-helper cell type 2 (Th2) and non-Th2 molecular phenotypes of asthma using sputum transcriptomics in U-BIOPRED
Sputum transcriptomics reveal upregulation of IL-1 receptor family members in patients with severe asthma
Pathway discovery using transcriptomic profiles in adult-onset severe asthma
Transcriptomic gene signatures associated with persistent airflow limitation in patients with severe asthma
U-BIOPRED clinical adult asthma clusters linked to a subset of sputum omics
A Transcriptome-driven Analysis of Epithelial Brushings and Bronchial Biopsies to Define Asthma Phenotypes in U-BIOPRED
Severe asthma exists despite suppressed tissue inflammation: findings of the U-BIOPRED study
Clinical and inflammatory characteristics of the European U-BIOPRED adult severe asthma cohort
The burden of severe asthma in childhood and adolescence: results from the paediatric U-BIOPRED cohorts