Area of research
Clinical Biochemistry · Plant Science
Research interest
Research interests include Paraoxonase enzyme and polymorphisms, Cynara cardunculus studies, Apelin-related biomedical research, and Atherosclerosis and Cardiovascular Diseases.
Inhibition of microbiota-dependent TMAO production attenuates chronic kidney disease in mice
NOTUM promotes thermogenic capacity and protects against diet-induced obesity in male mice
Trimethylamine N-oxide levels are associated with NASH in obese subjects with type 2 diabetes
Genetic Deficiency of Flavin-Containing Monooxygenase 3 ( <i>Fmo3</i> ) Protects Against Thrombosis but Has Only a Minor Effect on Plasma Lipid Levels—Brief Report
Flavin monooxygenase 3, the host hepatic enzyme in the metaorganismal trimethylamine N‐oxide‐generating pathway, modulates platelet responsiveness and thrombosis risk
A Strategy for Discovery of Endocrine Interactions with Application to Whole-Body Metabolism
The TMAO-Producing Enzyme Flavin-Containing Monooxygenase 3 Regulates Obesity and the Beiging of White Adipose Tissue
Trimethylamine N‐Oxide Promotes Vascular Inflammation Through Signaling of Mitogen‐Activated Protein Kinase and Nuclear Factor‐κB
The TMAO-Generating Enzyme Flavin Monooxygenase 3 Is a Central Regulator of Cholesterol Balance
Flavin containing monooxygenase 3 exerts broad effects on glucose and lipid metabolism and atherosclerosis
Trimethylamine-N-Oxide, a Metabolite Associated with Atherosclerosis, Exhibits Complex Genetic and Dietary Regulation
Myeloperoxidase, paraoxonase-1, and HDL form a functional ternary complex
Paraoxonase-1 Deficiency Is Associated with Severe Liver Steatosis in Mice Fed a High-fat High-cholesterol Diet: A Metabolomic Approach
PON3 is upregulated in cancer tissues and protects against mitochondrial superoxide-mediated cell death
Metabolism and Neurotoxicity of Homocysteine Thiolactone in Mice: Evidence for a Protective Role of Paraoxonase 1