Area of research
Molecular Biology · Pulmonary and Respiratory Medicine
Research interest
Research focused on Hyperoxia and Pathogenesis, with related work in Bronchopulmonary dysplasia, Cardiorespiratory fitness, Radical. Notable publications include 'Even free radicals should follow some rules: A Guide to free radical research terminology and methodology', 'Metabolic reprogramming in the pathogenesis of chronic lung diseases, including BPD, COPD, and pulmonary fibrosis', and 'Fatty Acid Oxidation Protects against Hyperoxia-induced Endothelial Cell Apoptosis and Lung Injury in Neonatal Mice'.
Endothelial Cpt1a Inhibits Neonatal Hyperoxia‐Induced Pulmonary Vascular Remodeling by Repressing Endothelial‐Mesenchymal Transition
Apnea, Intermittent Hypoxemia, and Bradycardia Events Predict Late-Onset Sepsis in Infants Born Extremely Preterm
Cardiorespiratory Monitoring Data to Predict Respiratory Outcomes in Extremely Preterm Infants
Maturation of cardioventilatory physiological trajectories in extremely preterm infants
Upregulating carnitine palmitoyltransferase 1 attenuates hyperoxia-induced endothelial cell dysfunction and persistent lung injury
The pentose phosphate pathway mediates hyperoxia-induced lung vascular dysgenesis and alveolar simplification in neonates
Endothelial to mesenchymal transition during neonatal hyperoxia‐induced pulmonary hypertension
Pre-Vent: the prematurity-related ventilatory control study
Endothelial-to-mesenchymal transition: Pathogenesis and therapeutic targets for chronic pulmonary and vascular diseases
Metabolic reprogramming in the pathogenesis of chronic lung diseases, including BPD, COPD, and pulmonary fibrosis
Fatty Acid Oxidation Protects against Hyperoxia-induced Endothelial Cell Apoptosis and Lung Injury in Neonatal Mice
Role of Fatty Acid Oxidation in Hyperoxia-induced Apoptosis in Neonatal Lung Endothelial Cells: Implications for Lung Injury and Repair
Even free radicals should follow some rules: A Guide to free radical research terminology and methodology