Area of research
Physiology · Neurology
Research interest
Research interests include Medicine, Biology, Protein arginine methyltransferase 5, Proteomics, Methylation, and Arginine.
miRNA biomarkers: advancing early detection of acute myocardial infarction
Synergistic reduction of air pollutants and carbon dioxide emissions in Shanxi Province, China from 2013 to 2020
Interleukin-13 promotes cellular senescence through inducing mitochondrial dysfunction in IgG4-related sialadenitis
7SK Acts as an Anti-tumor Factor in Tongue Squamous Cell Carcinoma
Persulfidation of transcription factor FOXO1 at cysteine 457: A novel mechanism by which H2S inhibits vascular smooth muscle cell proliferation
Disruption of tight junctions contributes to hyposalivation of salivary glands in a mouse model of type 2 diabetes
Proteomics profiling of arginine methylation defines PRMT5 substrate specificity
Peroxisome Proliferator-Activated Receptor-γ Coactivator-1α Inhibits Vascular Calcification Through Sirtuin 3-Mediated Reduction of Mitochondrial Oxidative Stress
Incidence and mortality trends in oral and oropharyngeal cancers in China, 2005–2013
Expression patterns of tight junction proteins in porcine major salivary glands: a comparison study with human and murine glands
Globular CTRP3 promotes mitochondrial biogenesis in cardiomyocytes through AMPK/PGC-1α pathway
Interleukin-17A promotes tongue squamous cell carcinoma metastasis through activating miR-23b/versican pathway
Enteric dysbiosis promotes antibiotic-resistant bacterial infection: systemic dissemination of resistant and commensal bacteria through epithelial transcytosis
Commensal Bacterial Endocytosis in Epithelial Cells Is Dependent on Myosin Light Chain Kinase–Activated Brush Border Fanning by Interferon-γ
Overexpression of C1q/Tumor Necrosis Factor–Related Protein-3 Promotes Phosphate-Induced Vascular Smooth Muscle Cell Calcification Both In Vivo and In Vitro
Characterization of the histone methyltransferase PRDM9 using biochemical, biophysical and chemical biology techniques