Area of research
Epidemiology · Immunology
Research interest
Research focused on Embryo and PAX6, with related work in Phagocytosis, Cell biology, Resveratrol. Notable publications include 'Oxygenated phosphatidylethanolamine navigates phagocytosis of ferroptotic cells by interacting with TLR2', 'A SIRT3/AMPK/autophagy network orchestrates the protective effects of trans-resveratrol in stressed peritoneal macrophages and RAW 264.7 macrophages', and 'Caffeine ameliorates high energy diet-induced hepatic steatosis: sirtuin 3 acts as a bridge in the lipid metabolism pathway'.
Mitigating phospholipid peroxidation of macrophages in stress-induced tumor microenvironment by natural ALOX15/PEBP1 complex inhibitors
An endogenous neuropeptide hormone assists cancer cells in escaping from immune surveillance
GPX4 deficiency-dependent phospholipid peroxidation drives motor deficits of ALS
Oxygenated phosphatidylethanolamine navigates phagocytosis of ferroptotic cells by interacting with TLR2
Novel insights into stress-induced susceptibility to influenza: corticosterone impacts interferon-β responses by Mfn2-mediated ubiquitin degradation of MAVS
JS-K, a nitric oxide donor, induces autophagy as a complementary mechanism inhibiting ovarian cancer
A SIRT3/AMPK/autophagy network orchestrates the protective effects of trans-resveratrol in stressed peritoneal macrophages and RAW 264.7 macrophages
A New Gestational Diabetes Mellitus Model, Hyperglycemia-Induced Eye Malformation via Inhibiting Pax6 in Chick Embryo
Bioactivity Focus of α-Cyano-4-hydroxycinnamic acid (CHCA) Leads to Effective Multifunctional Aldose Reductase Inhibitors
Abnormal O-GlcNAcylation of Pax3 Occurring from Hyperglycemia-Induced Neural Tube Defects Is Ameliorated by Carnosine But Not Folic Acid in Chicken Embryos
Caffeine ameliorates high energy diet-induced hepatic steatosis: sirtuin 3 acts as a bridge in the lipid metabolism pathway
Proanthocyanidins Prevent High Glucose-Induced Eye Malformation by Restoring Pax6 Expression in Chick Embryo
A natural product, resveratrol, protects against high-glucose-induced developmental damage in chicken embryo