Area of research
Cellular and Molecular Neuroscience · Neurology
Research interest
Research interests include Nerve injury and regeneration, Neuroinflammation and Neurodegeneration Mechanisms, Spinal Cord Injury Research, and Adenosine and Purinergic Signaling.
Voluntary wheel exercise improves glymphatic clearance and ameliorates colitis-associated cognitive impairment in aged mice by inhibiting TRPV4-induced astrocytic calcium activity
The Schwann cell-specific G-protein Gαo (Gnao1) is a cell-intrinsic controller contributing to the regulation of myelination in peripheral nerve system
TREM2 mediates physical exercise-promoted neural functional recovery in rats with ischemic stroke via microglia-promoted white matter repair
The transcription factor Stat-1 is essential for Schwann cell differentiation, myelination and myelin sheath regeneration
Pathophysiological mechanisms of chronic compressive spinal cord injury due to vascular events
Transcriptome Analysis of Schwann Cells at Various Stages of Myelination Implicates Chromatin Regulator Sin3A in Control of Myelination Identity
The Etv1/Er81 transcription factor coordinates myelination-related genes to regulate Schwann cell differentiation and myelination
Decellularization alters the unfavorable regenerative adverse microenvironment of the injured spinal cord to support neurite outgrowth
Chronic colitis exacerbates NLRP3-dependent neuroinflammation and cognitive impairment in middle-aged brain
BMSC-derived extracellular matrix better optimizes the microenvironment to support nerve regeneration
Time-Specific Pattern of Iron Deposition in Different Regions in Parkinson's Disease Measured by Quantitative Susceptibility Mapping
Neurotrophin-3-Loaded Multichannel Nanofibrous Scaffolds Promoted Anti-Inflammation, Neuronal Differentiation, and Functional Recovery after Spinal Cord Injury