Area of research
Molecular Biology · Developmental Neuroscience
Research interest
Research interests include Pluripotent Stem Cells Research, Neurogenesis and neuroplasticity mechanisms, Neuroinflammation and Neurodegeneration Mechanisms, and Nerve injury and regeneration.
Efficacy analysis of fiberoptic bronchoscopy combined with thoracoscopy in the treatment of mediastinal bronchogenic cysts in children
Cuproptosis-related lncRNAs emerge as a novel signature for predicting prognosis in prostate carcinoma and functional experimental validation
Intraprocedural computed tomography-guided navigation with ventilatory strategy for atelectasis (ICNVA): a modified electromagnetic navigation bronchoscopy
FGF/FGFR system in the central nervous system demyelinating disease: Recent progress and implications for multiple sclerosis
Recognize the role of CD146/MCAM in the osteosarcoma progression: an in vitro study
Down-regulation of UBA6 exacerbates brain injury by inhibiting the activation of Notch signaling pathway to promote cerebral cell apoptosis in rat acute cerebral infarction model
Enhancing glycolysis attenuates Parkinson’s disease progression in models and clinical databases
Employing Endogenous NSCs to Promote Recovery of Spinal Cord Injury
SIRT6 deficiency results in developmental retardation in cynomolgus monkeys
Differentiation of Glial Cells From hiPSCs: Potential Applications in Neurological Diseases and Cell Replacement Therapy
Cryptotanshinone inhibits proliferation yet induces apoptosis by suppressing STAT3 signals in renal cell carcinoma
TGF-β1 signaling pathway serves a role in HepG2 cell regulation by affecting the protein expression of PCNA, gankyrin, p115, XIAP and survivin
Tumor suppressor PRSS8 targets Sphk1/S1P/Stat3/Akt signaling in colorectal cancer
PRSS8 methylation and its significance in esophageal squamous cell carcinoma
Upregulation of SOX4 antagonizes cellular senescence in esophageal squamous cell carcinoma
PTEN deficiency reprogrammes human neural stem cells towards a glioblastoma stem cell-like phenotype
Lmx1a enhances the effect of iNSCs in a PD model