Area of research
Molecular Biology · Physiology
Research interest
Research interests include Mitochondrial Function and Pathology, Adipose Tissue and Metabolism, Cardiac Ischemia and Reperfusion, and Peroxisome Proliferator-Activated Receptors.
Liver Ischemia Reperfusion Injury, Enhanced by Trained Immunity, Is Attenuated in Caspase 1/Caspase 11 Double Gene Knockout Mice
Twenty Novel Disease Group-Specific and 12 New Shared Macrophage Pathways in Eight Groups of 34 Diseases Including 24 Inflammatory Organ Diseases and 10 Types of Tumors
Experimental Data-Mining Analyses Reveal New Roles of Low-Intensity Ultrasound in Differentiating Cell Death Regulatome in Cancer and Non-cancer Cells via Potential Modulation of Chromatin Long-Range Interactions
DNA Checkpoint and Repair Factors Are Nuclear Sensors for Intracellular Organelle Stresses—Inflammations and Cancers Can Have High Genomic Risks
Mitochondrial Proton Leak Plays a Critical Role in Pathogenesis of Cardiovascular Diseases
A comprehensive data mining study shows that most nuclear receptors act as newly proposed homeostasis-associated molecular pattern receptors
Analyses of caspase-1-regulated transcriptomes in various tissues lead to identification of novel IL-1β-, IL-18- and sirtuin-1-independent pathways
Novel extracellular and nuclear caspase-1 and inflammasomes propagate inflammation and regulate gene expression: a comprehensive database mining study
Lysophospholipid Receptors, as Novel Conditional Danger Receptors and Homeostatic Receptors Modulate Inflammation—Novel Paradigm and Therapeutic Potential
Interleukin-6 mediates exercise preconditioning against myocardial ischemia reperfusion injury
Cardioprotective HIF-1α-frataxin signaling against ischemia-reperfusion injury
The role of frataxin in doxorubicin-mediated cardiac hypertrophy
Involvement of the δ‐opioid receptor in exercise‐induced cardioprotection
Adiponectin downregulation is associated with volume overload-induced myocyte dysfunction in rats
Central activation of PPAR-gamma ameliorates diabetes induced cognitive dysfunction and improves BDNF expression
Chronic β1-adrenergic blockade enhances myocardial β3-adrenergic coupling with nitric oxide-cGMP signaling in a canine model of chronic volume overload: new insight into mechanisms of cardiac benefit with selective β1-blocker therapy
The role of frataxin in doxorubicin‐mediated cardiac hypertrophy (648.6)
Abstract 38: Important Role of Adiponectin in Volume Overload Induced Heart Failure
PPARγ Activation Improves the Molecular and Functional Components of Ito Remodeling by Angiotensin II
Ischemia reperfusion injury, K<sub>ATP</sub>channels, and exercise-induced cardioprotection against apoptosis
The cardio-protective signaling and mechanisms of adiponectin.
PubMed 2012cited by 51position: first
Design, development and evaluation of novel dual PPARδ/PPARγ agonists
Protective Mechanism of PPAR‐delta‐HIF1 signaling in the Ischemic Diabetic Heart