Area of research
Public Health, Environmental and Occupational Health · Molecular Biology
Research interest
Research focused on Mesenchymal stem cell and Downregulation and upregulation, with related work in Ovarian reserve, Microvesicles, MALAT1. Notable publications include 'M6A demethylase FTO-stabilized exosomal circBRCA1 alleviates oxidative stress-induced granulosa cell damage via the miR-642a-5p/FOXO1 axis', 'EIF4A3-Induced Exosomal circLRRC8A Alleviates Granulosa Cells Senescence Via the miR-125a-3p/NFE2L1 axis', and 'm6A-modified RIPK4 facilitates proliferation and cisplatin resistance in epithelial ovarian cancer'.
HuMSCs-derived exosomal YBX1 participates in oxidative damage repair in granulosa cells by stabilizing COX5B mRNA in an m5C-dependent manner
M6A demethylase FTO-stabilized exosomal circBRCA1 alleviates oxidative stress-induced granulosa cell damage via the miR-642a-5p/FOXO1 axis
Exosomal YB-1 facilitates ovarian restoration by MALAT1/miR-211-5p/FOXO3 axis
Hypoxic mesenchymal stem cell-derived exosomal circDennd2a regulates granulosa cell glycolysis by interacting with LDHA
Integrative bioinformatics analysis for identifying the mitochondrial-related gene signature associated with immune infiltration in premature ovarian insufficiency
EIF4A3-Induced Exosomal circLRRC8A Alleviates Granulosa Cells Senescence Via the miR-125a-3p/NFE2L1 axis
m6A-modified RIPK4 facilitates proliferation and cisplatin resistance in epithelial ovarian cancer