Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include Circular RNAs in diseases, MicroRNA in disease regulation, Cancer-related molecular mechanisms research, and RNA modifications and cancer.
Structural design of hierarchical porous biomass carbon with a built-in electric field for efficient peroxymonosulfate activation
Indole-3-Carbinol (I3C) Protects the Heart From Ischemia/Reperfusion Injury by Inhibiting Oxidative Stress, Inflammation, and Cellular Apoptosis in Mice
METTL3 Facilitates Tumor Progression by COL12A1/MAPK Signaling Pathway in Esophageal Squamous Cell Carcinoma
CircLIFR synergizes with MSH2 to attenuate chemoresistance via MutSα/ATM-p73 axis in bladder cancer
Overexpression of DJ-1 enhances colorectal cancer cell proliferation through the cyclin-D1/MDM2-p53 signaling pathway
MEG3, as a Competing Endogenous RNA, Binds with miR-27a to Promote PHLPP2 Protein Translation and Impairs Bladder Cancer Invasion
A Feedback Loop Formed by ATG7/Autophagy, FOXO3a/miR-145 and PD-L1 Regulates Stem-like Properties and Invasion in Human Bladder Cancer
CD44s is a crucial ATG7 downstream regulator for stem-like property, invasion, and lung metastasis of human bladder cancer (BC) cells
The inhibitory effect of compound ChlA-F on human bladder cancer cell invasion can be attributed to its blockage of SOX2 protein
Autophagy-mediated <i>Mir6981</i> degradation exhibits <i>CDKN1B</i> promotion of PHLPP1 protein translation
Role of STAT3 and FOXO1 in the Divergent Therapeutic Responses of Non-metastatic and Metastatic Bladder Cancer Cells to miR-145
XIAP BIR domain suppresses miR-200a expression and subsequently promotes EGFR protein translation and anchorage-independent growth of bladder cancer cell
Upregulation of SQSTM1/p62 contributes to nickel-induced malignant transformation of human bronchial epithelial cells
Isorhapontigenin (ISO) Inhibits Invasive Bladder Cancer Formation <i>In Vivo</i> and Human Bladder Cancer Invasion <i>In Vitro</i> by Targeting STAT1/FOXO1 Axis