Area of research
Cellular and Molecular Neuroscience · Cancer Research
Research interest
Research interests include Nerve injury and regeneration, Circular RNAs in diseases, Spinal Cord Injury Research, and Cancer-related molecular mechanisms research.
The Role of Methylation Modification in Neural Injury and Repair
Genome-wide profiling and functional characterization of circular RNAs in neural development and injury: insights from a rat model research
Internal hernia following No.253 lymph node dissection in colon cancer: A case report
Single-cell profiling of cellular changes in the somatic peripheral nerves following nerve injury
Enhancing regeneration and repair of long-distance peripheral nerve defect injuries with continuous microcurrent electrical nerve stimulation
Identification of key regulatory genes involved in myelination after spinal cord injury by GSEA analysis
The therapeutic potential of microRNAs to ameliorate spinal cord injury by regulating oligodendrocyte progenitor cells and remyelination
LINC MIR503HG Controls SC‐β Cell Differentiation and Insulin Production by Targeting CDH1 and HES1
Convergent and divergent transcriptional reprogramming of motor and sensory neurons underlying response to peripheral nerve injury
The roles of circular RNAs in nerve injury and repair
A new technique for protective enterostomy: Skin bridge ostomy
Porous microneedle patch with sustained delivery of extracellular vesicles mitigates severe spinal cord injury
Controlled delivery of a neurotransmitter–agonist conjugate for functional recovery after severe spinal cord injury
Chronic stress hinders sensory axon regeneration via impairing mitochondrial cristae and OXPHOS
Pyruvate dehydrogenase beta subunit (Pdhb) promotes peripheral axon regeneration by regulating energy supply and gene expression
Promoting axon regeneration by inhibiting RNA N6-methyladenosine demethylase ALKBH5
Insight into protein synthesis in axon regeneration
Author Correction: Porous microneedle patch with sustained delivery of extracellular vesicles mitigates severe spinal cord injury
Cooperation of long noncoding RNA LOC100909675 and transcriptional regulator CTCF modulates Cdk1 transcript to control astrocyte proliferation
Spatiotemporal Dynamics of the Molecular Expression Pattern and Intercellular Interactions in the Glial Scar Response to Spinal Cord Injury
Heterogeneity analysis of astrocytes following spinal cord injury at single‐cell resolution
Single‐cell sequencing reveals microglia induced angiogenesis by specific subsets of endothelial cells following spinal cord injury
RSK1 promotes mammalian axon regeneration by inducing the synthesis of regeneration-related proteins
Gas5 inhibition promotes the axon regeneration in the adult mammalian nervous system
Single‐cell <scp>RNA</scp> sequencing for traumatic spinal cord injury
The metabolomic profiling identifies N, N‐dimethylglycine as a facilitator of dorsal root ganglia neuron axon regeneration after injury
Integrated analyses reveal evolutionarily conserved and specific injury response genes in dorsal root ganglion
An artificial LAMA2-GelMA hydrogel microenvironment for the development of pancreatic endocrine progenitors
Unfolded protein response-induced expression of long noncoding RNA Ngrl1 supports peripheral axon regeneration by activating the PI3K-Akt pathway
A comparative analysis of differentially expressed genes in rostral and caudal regions after spinal cord injury in rats