Area of research
Physiology · Molecular Biology
Research interest
Research interests include Metabolomics and Mass Spectrometry Studies, Adipose Tissue and Metabolism, Diet and metabolism studies, and Mitochondrial Function and Pathology.
Temporal dynamics of the multi-omic response to endurance exercise training
Metabolic Effects of the SGLT2 Inhibitor Dapagliflozin in Heart Failure Across the Spectrum of Ejection Fraction
Circulating metabolic profile in idiopathic pulmonary fibrosis: data from the IPF-PRO Registry
Molecular Transducers of Physical Activity Consortium (MoTrPAC): human studies design and protocol
Impact of lifestyle Intervention on branched‐chain amino acid catabolism and insulin sensitivity in adolescents with obesity
FIT2 is an acyl–coenzyme A diphosphatase crucial for endoplasmic reticulum homeostasis
BCAA catabolism in brown fat controls energy homeostasis through SLC25A44
Dietary Sugars Alter Hepatic Fatty Acid Oxidation via Transcriptional and Post-translational Modifications of Mitochondrial Proteins
Divergent effects of glucose and fructose on hepatic lipogenesis and insulin signaling
Interrupted Glucagon Signaling Reveals Hepatic α Cell Axis and Role for L-Glutamine in α Cell Proliferation
Catabolic Defect of Branched-Chain Amino Acids Promotes Heart Failure
N6 -Methyladenosine in Flaviviridae Viral RNA Genomes Regulates Infection
Integrated Regulation of Hepatic Lipid and Glucose Metabolism by Adipose Triacylglycerol Lipase and FoxO Proteins
Lysine Glutarylation Is a Protein Posttranslational Modification Regulated by SIRT5
Metabolic programming and PDHK1 control CD4+ T cell subsets and inflammation
Mechanical Unloading Promotes Myocardial Energy Recovery in Human Heart Failure
Targeted Metabolomics Connects Thioredoxin-interacting Protein (TXNIP) to Mitochondrial Fuel Selection and Regulation of Specific Oxidoreductase Enzymes in Skeletal Muscle
Gut Microbiota from Twins Discordant for Obesity Modulate Metabolism in Mice
SIRT5 Regulates the Mitochondrial Lysine Succinylome and Metabolic Networks
Circadian Clock NAD <sup>+</sup> Cycle Drives Mitochondrial Oxidative Metabolism in Mice
Caffeine stimulates hepatic lipid metabolism by the autophagy-lysosomal pathway in mice
Acidosis induces reprogramming of cellular metabolism to mitigate oxidative stress
Androgens regulate prostate cancer cell growth via an AMPK-PGC-1α-mediated metabolic switch
BMI, RQ, Diabetes, and Sex Affect the Relationships Between Amino Acids and Clamp Measures of Insulin Action in Humans
Ablation of Dihydroceramide Desaturase 1, a Therapeutic Target for the Treatment of Metabolic Diseases, Simultaneously Stimulates Anabolic and Catabolic Signaling
Adipose-Specific Deletion of TFAM Increases Mitochondrial Oxidation and Protects Mice against Obesity and Insulin Resistance
Skeletal muscle Nur77 expression enhances oxidative metabolism and substrate utilization