Area of research
Immunology · Nephrology
Research interest
Research focused on Cell biology and Vascular smooth muscle, with related work in Apoptosis, Inflammation, Diabetes mellitus. Notable publications include 'Gut Microbiota and Atherosclerosis—Focusing on the Plaque Stability', 'Activation of CD137 signaling promotes neointimal formation by attenuating TET2 and transferrring from endothelial cell-derived exosomes to vascular smooth muscle cells', and 'Role of endothelial cells in vascular calcification'.
Macrophage polarisation and inflammatory mechanisms in atherosclerosis: Implications for prevention and treatment
Acetylation-ubiquitination crosstalk of DJ-1 mediates microcalcification formation in diabetic plaques via collagen-matrix vesicles interaction
SIRT3-and FAK-mediated acetylation-phosphorylation crosstalk of NFATc1 regulates Nε-carboxymethyl-lysine-induced vascular calcification in diabetes mellitus
CD137 signaling aggravates myocardial ischemia-reperfusion injury by inhibiting mitophagy mediated NLRP3 inflammasome activation
Disruption of COMMD1 accelerates diabetic atherosclerosis by promoting glycolysis
Role of ceramides in diabetic foot ulcers (Review)
Role of endothelial cells in vascular calcification
Circadian rhythm disorders elevate macrophages cytokines release and promote multiple tissues/organs dysfunction in mice
Agonist-induced Piezo1 activation promote mitochondrial-dependent apoptosis in vascular smooth muscle cells
Macrophage CD36 and TLR4 Cooperation Promotes Foam Cell Formation and VSMC Migration and Proliferation Under Circadian Oscillations
Gut Microbiota and Atherosclerosis—Focusing on the Plaque Stability
Epidemiological Research Advances in Vascular Calcification in Diabetes
Differences of Angiogenesis Factors in Tumor and Diabetes Mellitus
Activation of CD137 signaling promotes macrophage apoptosis dependent on p38 MAPK pathway-mediated mitochondrial fission
Exosome derived from CD137‐modified endothelial cells regulates the Th17 responses in atherosclerosis
Activation of CD137 signaling promotes neointimal formation by attenuating TET2 and transferrring from endothelial cell-derived exosomes to vascular smooth muscle cells