Area of research
Physiology · Immunology
Research interest
Research focused on Transcriptome and Expression quantitative trait loci, with related work in Asthma, Single-nucleotide polymorphism, Mucus. Notable publications include 'COVID-19–related Genes in Sputum Cells in Asthma. Relationship to Demographic Features and Corticosteroids', 'Dense genotyping of immune-related disease regions identifies 14 new susceptibility loci for juvenile idiopathic arthritis', and 'Type 2 and interferon inflammation regulate SARS-CoV-2 entry factor expression in the airway epithelium'.
Type 1 Immune Responses Related to Viral Infection Influence Corticosteroid Response in Asthma
A common polymorphism in the Intelectin-1 gene influences mucus plugging in severe asthma
SARS-CoV-2 infection produces chronic pulmonary epithelial and immune cell dysfunction with fibrosis in mice
Nasal airway transcriptome-wide association study of asthma reveals genetically driven mucus pathobiology
Pharmacogenetic studies of long-acting beta agonist and inhaled corticosteroid responsiveness in randomised controlled trials of individuals of African descent with asthma
eScholarship (California Digital Library) 2021cited by 14position: middle
COVID-19–related Genes in Sputum Cells in Asthma. Relationship to Demographic Features and Corticosteroids
Type 2 and interferon inflammation regulate SARS-CoV-2 entry factor expression in the airway epithelium
Single-Cell and Population Transcriptomics Reveal Pan-epithelial Remodeling in Type 2-High Asthma
Genome-Wide Analysis Reveals Mucociliary Remodeling of the Nasal Airway Epithelium Induced by Urban PM2.5
Functional genomics of CDHR3 confirms its role in HRV-C infection and childhood asthma exacerbations
Mapping adipose and muscle tissue expression quantitative trait loci in African Americans to identify genes for type 2 diabetes and obesity
Identification of a Systemic Lupus Erythematosus Risk Locus Spanning <i>ATG16L2, FCHSD2</i>, and <i>P2RY2</i> in Koreans
Dense genotyping of immune-related disease regions identifies 14 new susceptibility loci for juvenile idiopathic arthritis