Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include RNA modifications and cancer, Cancer-related molecular mechanisms research, Glioma Diagnosis and Treatment, and RNA Research and Splicing.
The ruthenium complex assists in nuclear targeting and selective killing of tumor cells
EP11.02-09 Rh-endostatin Combined With PD-1 inhibitors as First-line Treatment for EGFR/ALK-Negative, Non-squamous NSCLC
Serum Metabonomics Reveals Risk Factors in Different Periods of Cerebral Infarction in Humans
PRMT6 methylation of RCC1 regulates mitosis, tumorigenicity, and radiation response of glioblastoma stem cells
Stem cell programs in cancer initiation, progression, and therapy resistance
Sensory nerves regulate mesenchymal stromal cell lineage commitment by tuning sympathetic tones
LY6K promotes glioblastoma tumorigenicity via CAV-1–mediated ERK1/2 signaling enhancement
Prostaglandin E2 mediates sensory nerve regulation of bone homeostasis
Macrophage-lineage TRAP+ cells recruit periosteum-derived cells for periosteal osteogenesis and regeneration
Sensory innervation in porous endplates by Netrin-1 from osteoclasts mediates PGE2-induced spinal hypersensitivity in mice
<i>MIR93</i>(<i>microRNA -93</i>) regulates tumorigenicity and therapy response of glioblastoma by targeting autophagy
SRSF3-Regulated RNA Alternative Splicing Promotes Glioblastoma Tumorigenicity by Affecting Multiple Cellular Processes
Ciliary parathyroid hormone signaling activates transforming growth factor-β to maintain intervertebral disc homeostasis during aging
Genome-wide methylomic and transcriptomic analyses identify subtype-specific epigenetic signatures commonly dysregulated in glioma stem cells and glioblastoma
MST4 Phosphorylation of ATG4B Regulates Autophagic Activity, Tumorigenicity, and Radioresistance in Glioblastoma
MicroRNA‐130a regulates cerebral ischemia–induced blood–brain barrier permeability by targeting Homeobox A5
A regulatory circuit of miR-125b/miR-20b and Wnt signalling controls glioblastoma phenotypes through FZD6-modulated pathways
SHP-2-upregulated ZEB1 is important for PDGFRα-driven glioma epithelial–mesenchymal transition and invasion in mice and humans
EGFR phosphorylation of DCBLD2 recruits TRAF6 and stimulates AKT-promoted tumorigenesis
Mesenchymal glioma stem cells are maintained by activated glycolytic metabolism involving aldehyde dehydrogenase 1A3
TGF-β induces miR-182 to sustain NF-κB activation in glioma subsets
Loss of miR-204 Expression Enhances Glioma Migration and Stem Cell-like Phenotype
miR-486 sustains NF-κB activity by disrupting multiple NF-κB-negative feedback loops