Area of research
Cellular and Molecular Neuroscience · Molecular Biology
Research interest
Research interests include Nerve injury and regeneration, Neurogenesis and neuroplasticity mechanisms, Virus-based gene therapy research, and Single-cell and spatial transcriptomics.
Single-cell and spatial atlases of spinal cord injury in the Tabulae Paralytica
Recovery of walking after paralysis by regenerating characterized neurons to their natural target region
The circadian clock time tunes axonal regeneration
Confronting false discoveries in single-cell differential expression
Cell type prioritization in single-cell data
Enriched conditioning expands the regenerative ability of sensory neurons after spinal cord injury via neuronal intrinsic redox signaling
Cbp-dependent histone acetylation mediates axon regeneration induced by environmental enrichment in rodent spinal cord injury models
Epigenomic signatures underpin the axonal regenerative ability of dorsal root ganglia sensory neurons
PP4‐dependent HDAC3 dephosphorylation discriminates between axonal regeneration and regenerative failure
Reactive oxygen species regulate axonal regeneration through the release of exosomal NADPH oxidase 2 complexes into injured axons
Intramuscular Neurotrophin-3 normalizes low threshold spinal reflexes, reduces spasms and improves mobility after bilateral corticospinal tract injury in rats
Delayed intramuscular human neurotrophin-3 improves recovery in adult and elderly rats after stroke
Transcriptional changes in sensory ganglia associated with primary afferent axon collateral sprouting in spared dermatome model
Efficient gene expression from integration-deficient lentiviral vectors in the spinal cord
Peripheral Nervous System Genes Expressed in Central Neurons Induce Growth on Inhibitory Substrates