Area of research
Cardiology and Cardiovascular Medicine · Molecular Biology
Research interest
Research interests include Biology, Drosophila (subgenus), Circadian rhythm, Neuroscience, Obesity, and Medicine.
The Interplay of Genetic Predisposition, Circadian Misalignment, and Metabolic Regulation in Obesity
Linkage of circadian rhythm disruptions with Alzheimer's disease and therapeutic interventions
Dissecting metabolic regulation of behaviors and physiology during aging in Drosophila
O-GlcNAc transferase regulates collagen deposition and fibrosis resolution in idiopathic pulmonary fibrosis
Diurnal expression of <i>Dgat2</i> induced by time‐restricted feeding maintains cardiac health in the <i>Drosophila</i> model of circadian disruption
Time‐restricted feeding mediated modulation of microbiota leads to changes in muscle physiology in Drosophila obesity models
Apolipoprotein E Induces Lipid Accumulation Through Dgat2 That Is Prevented with Time-Restricted Feeding in Drosophila
Automated assessment of cardiac dynamics in aging and dilated cardiomyopathy Drosophila models using machine learning
A conserved role for ALG10/ALG10B and the <i>N</i> -glycosylation pathway in the sleep-epilepsy axis
When a calorie is not just a calorie: Diet quality and timing as mediators of metabolism and healthy aging
Time-restricted feeding promotes muscle function through purine cycle and AMPK signaling in Drosophila obesity models
Circadian‐mediated regulation of cardiometabolic disorders and aging with time‐restricted feeding
Time‐restricted feeding regulates lipid metabolism under metabolic challenges
Mitochondrial epigenetic modifications and nuclear-mitochondrial communication: A new dimension towards understanding and attenuating the pathogenesis in women with PCOS
Rapamycin reduces neuronal mutant huntingtin aggregation and ameliorates locomotor performance in Drosophila
A Skeletal Muscle-Centric View on Time-Restricted Feeding and Obesity under Various Metabolic Challenges in Humans and Animals
Using Drosophila as an integrated model to study mild repetitive traumatic brain injury
Time-restricted feeding attenuates age-related cardiac decline in <i>Drosophila</i>