Area of research
Molecular Biology · Physiology
Research interest
Research interests include Adipose Tissue and Metabolism, Mitochondrial Function and Pathology, Sphingolipid Metabolism and Signaling, and Lipid metabolism and biosynthesis.
Semaglutide‐induced weight loss improves mitochondrial energy efficiency in skeletal muscle
Ceramide-induced FGF13 impairs systemic metabolic health
Dietary fat disrupts a commensal-host lipid network that promotes metabolic health
Sedentary behavior in mice induces metabolic inflexibility by suppressing skeletal muscle pyruvate metabolism
The phospholipids cardiolipin and phosphatidylethanolamine differentially regulate MDC biogenesis
HAF prevents hepatocyte apoptosis and progression to MASH and HCC through transcriptional regulation of the NF-κB pathway
Mitochondrial phosphatidylethanolamine modulates UCP1 to promote brown adipose thermogenesis
Lipid hydroperoxides promote sarcopenia through carbonyl stress
Ceramides Increase Fatty Acid Utilization in Intestinal Progenitors to Enhance Stemness and Increase Tumor Risk
Acute activation of adipocyte lipolysis reveals dynamic lipid remodeling of the hepatic lipidome
Weight loss increases skeletal muscle mitochondrial energy efficiency in obese mice
Inhibition of the skeletal muscle Lands cycle ameliorates weakness induced by physical inactivity
An evolutionary trade-off between host immunity and metabolism drives fatty liver in male mice
Critical role for isoprenoids in apicoplast biogenesis by malaria parasites
Cordyceps inhibits ceramide biosynthesis and improves insulin resistance and hepatic steatosis
Sphingosine‐1‐phosphate controls endothelial sphingolipid homeostasis via ORMDL
Following Roux-en-Y gastric bypass surgery, serum ceramides demarcate patients that will fail to achieve normoglycemia and diabetes remission
Lysophospholipid acylation modulates plasma membrane lipid organization and insulin sensitivity in skeletal muscle
The biochemical basis of mitochondrial dysfunction in Zellweger Spectrum Disorder
Nampt Potentiates Antioxidant Defense in Diabetic Cardiomyopathy
Mitochondrial dysfunction in mouse livers depleted of iron chaperone PCBP1
Low lysophosphatidylcholine induces skeletal muscle myopathy that is aggravated by high‐fat diet feeding
Metabolic reprogramming of the myeloid lineage by Schistosoma mansoni infection persists independently of antigen exposure
Characterizing a Common CERS2 Polymorphism in a Mouse Model of Metabolic Disease and in Subjects from the Utah CAD Study
Iron Chaperone Poly rC Binding Protein 1 Protects Mouse Liver From Lipid Peroxidation and Steatosis
Mitochondrial fatty acid synthesis coordinates oxidative metabolism in mammalian mitochondria
QSRR Automator: A Tool for Automating Retention Time Prediction in Lipidomics and Metabolomics
Ceramides are necessary and sufficient for diet-induced impairment of thermogenic adipocytes
Spongian Diterpenoids Derived from the Antarctic Sponge <i>Dendrilla antarctica</i> Are Potent Inhibitors of the <i>Leishmania</i> Parasite
Targeting a ceramide double bond improves insulin resistance and hepatic steatosis