Area of research
Physiology · Pulmonary and Respiratory Medicine
Research interest
Research interests include Asthma and respiratory diseases, Neonatal Respiratory Health Research, Genetic Associations and Epidemiology, and MicroRNA in disease regulation.
Long COVID Incidence Proportion in Adults and Children Between 2020 and 2024: An Electronic Health Record-Based Study From the RECOVER Initiative
Characterizing Long COVID Symptoms During Early Childhood
Ethnic and racial differences in children and young people with respiratory and neurological post-acute sequelae of SARS-CoV-2: an electronic health record-based cohort study from the RECOVER Initiative
piRNA associates with immune diseases
Researching COVID to enhance recovery (RECOVER) pediatric study protocol: Rationale, objectives and design
Neutrophil extracellular trap production and CCL4L2 expression influence corticosteroid response in asthma
Protein interaction networks provide insight into fetal origins of chronic obstructive pulmonary disease
Drug Repurposing to Treat Glucocorticoid Resistance in Asthma
Epigenome-wide meta-analysis of blood DNA methylation in newborns and children identifies numerous loci related to gestational age
Genome-wide association study of asthma exacerbations despite inhaled corticosteroid use
Whole-Genome Sequencing of Pharmacogenetic Drug Response in Racially Diverse Children with Asthma
Pulmonary Neuroendocrine Cells Secrete γ-Aminobutyric Acid to Induce Goblet Cell Hyperplasia in Primate Models
Detecting Differentially Variable MicroRNAs via Model-Based Clustering
Detecting Differential Variable microRNAs via Model-Based Clustering
Sex-Based Genetic Association Study Identifies <i>CELSR1</i> as a Possible Chronic Obstructive Pulmonary Disease Risk Locus among Women
Rationale and Design of the Multiethnic Pharmacogenomics in Childhood Asthma Consortium
Patterns of Growth and Decline in Lung Function in Persistent Childhood Asthma
Genetics and Genomics of Longitudinal Lung Function Patterns in Individuals with Asthma
Unjamming and cell shape in the asthmatic airway epithelium
A disease module in the interactome explains disease heterogeneity, drug response and captures novel pathways and genes in asthma
CTNNA3 and SEMA3D: Promising loci for asthma exacerbation identified through multiple genome-wide association studies
Genome-Wide Association Study of Short-Acting β2-Agonists. A Novel Genome-Wide Significant Locus on Chromosome 2 near <i>ASB3</i>
Fetal lung and placental methylation is associated with in utero nicotine exposure
Genetic predictors associated with improvement of asthma symptoms in response to inhaled corticosteroids
MicroRNA‐10a controls airway smooth muscle cell proliferation <i>via</i> direct targeting of the PI3 kinase pathway
A genome-wide association study of bronchodilator response in asthmatics
Integration of Mouse and Human Genome-Wide Association Data Identifies KCNIP4 as an Asthma Gene
Genome-Wide Association Analysis in Asthma Subjects Identifies SPATS2L as a Novel Bronchodilator Response Gene
Genome-wide Association Identifies the <i>T</i> Gene as a Novel Asthma Pharmacogenetic Locus
<scp>HLA</scp>‐<scp>DQ</scp> strikes again: Genome‐wide association study further confirms <i><scp>HLA</scp>‐<scp>DQ</scp></i> in the diagnosis of asthma among adults