Area of research
Developmental Neuroscience · Cellular and Molecular Neuroscience
Research interest
Research interests include Neurogenesis and neuroplasticity mechanisms, Nerve injury and regeneration, MicroRNA in disease regulation, and Cancer Cells and Metastasis.
Thyroid hormone T4 mitigates traumatic brain injury in mice by dynamically remodeling cell type specific genes, pathways, and networks in hippocampus and frontal cortex
Systems spatiotemporal dynamics of traumatic brain injury at single-cell resolution reveals humanin as a therapeutic target
Single cell molecular alterations reveal target cells and pathways of concussive brain injury
CCT6A suppresses SMAD2 and promotes prometastatic TGF-β signaling
Traumatic Brain Injury Induces Genome-Wide Transcriptomic, Methylomic, and Network Perturbations in Brain and Blood Predicting Neurological Disorders
7,8-Dihydroxyflavone facilitates the action exercise to restore plasticity and functionality: Implications for early brain trauma recovery
Short-term fructose ingestion affects the brain independently from establishment of metabolic syndrome
Systems Nutrigenomics Reveals Brain Gene Networks Linking Metabolic and Brain Disorders
Interplay between exercise and dietary fat modulates myelinogenesis in the central nervous system
Non-canonical NF-κB signalling and ETS1/2 cooperatively drive C250T mutant TERT promoter activation
Flavonoid derivative 7,8-DHF attenuates TBI pathology via TrkB activation
Curcumin boosts DHA in the brain: Implications for the prevention of anxiety disorders
Interactive actions of Bdnf methylation and cell metabolism for building neural resilience under the influence of diet
Exercise facilitates the action of dietary DHA on functional recovery after brain trauma
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