Area of research
Physiology · Public Health, Environmental and Occupational Health
Research interest
Research interests include Randomized controlled trial, Coaching, Intervention (counseling), Medicine, Physical therapy, and SIRT3.
A cross-sectional study exploring relationships between triglyceride glucose index, atherogenic index of plasma, and chronic pain: NHANES 1999–2004
SIRT3 and SIRT4 double-genes remodeled the mitochondrial network to induce hepatocellular carcinoma cell line differentiation and suppress malignant phenotypes
PRMT1 alleviates isoprenaline-induced myocardial hypertrophy by methylating SRSF1
An 8-Week Peer Health Coaching Intervention among College Students: A Pilot Randomized Study
Synaptotagmin‐7 mediates cardiac hypertrophy by targeting autophagy
Endoplasmic reticulum stress caused by traumatic injury promotes cardiomyocyte apoptosis through acetylation modification of GRP78
Platinum nanoparticles promote breast cancer cell metastasis by disrupting endothelial barrier and inducing intravasation and extravasation
Sympathetic nerve infiltration promotes stomach adenocarcinoma progression via norepinephrine/β2-adrenoceptor/YKL-40 signaling pathway
Upregulation of α enolase (ENO1) crotonylation in colorectal cancer and its promoting effect on cancer cell metastasis
Endoplasmic reticulum stress contributed to <roman>β</roman><sub>1</sub>-adrenoceptor autoantibody-induced reduction of autophagy in cardiomyocytes
Decreased autophagy induced by β1-adrenoceptor autoantibodies contributes to cardiomyocyte apoptosis
Isolation and culture of vascular smooth muscle cells from rat placenta
Activation of caspase-12 at early stage contributes to cardiomyocyte apoptosis in trauma-induced secondary cardiac injury.
PubMed 2017cited by 7position: first
PPARγ Agonist Ameliorates the Impaired Fluidity of the Myocardial Cell Membrane and Cardiac Injury in Hypercholesterolemic Rats
Decreased Autophagy in Rat Heart Induced by Anti-β1-Adrenergic Receptor Autoantibodies Contributes to the Decline in Mitochondrial Membrane Potential
Decreased Autophagy Contributes to Myocardial Dysfunction in Rats Subjected to Nonlethal Mechanical Trauma
Autoantibodies against the β3-Adrenoceptor Protect from Cardiac Dysfunction in a Rat Model of Pressure Overload
Increased Susceptibility to Metabolic Syndrome in Adult Offspring of Angiotensin Type 1 Receptor Autoantibody-Positive Rats