Area of research
Neurology · Developmental Neuroscience
Research interest
Research interests include Remyelination, Microglia, Multiple sclerosis, Neuroscience, Myelin, and Oligodendrocyte.
Astrocyte-oligodendrocyte interaction regulates central nervous system regeneration
Microglia-mediated demyelination protects against CD8+ T cell-driven axon degeneration in mice carrying PLP defects
Delayed Demyelination and Impaired Remyelination in Aged Mice in the Cuprizone Model
Cuprizone‐induced demyelination triggers a <scp>CD8</scp>‐pronounced T cell recruitment
Type I Interferon Receptor Signaling of Neurons and Astrocytes Regulates Microglia Activation during Viral Encephalitis
Effectors of Th1 and Th17 cells act on astrocytes and augment their neuroinflammatory properties
Synaptophysin Is a Reliable Marker for Axonal Damage
Polysialylation at Early Stages of Oligodendrocyte Differentiation Promotes Myelin Repair
In vitro evaluation of physiologically relevant concentrations of teriflunomide on activation and proliferation of primary rodent microglia
The quality of cortical network function recovery depends on localization and degree of axonal demyelination
Glial response during cuprizone-induced de- and remyelination in the CNS: lessons learned
Pivotal role of choline metabolites in remyelination
Effector molecules released by Th1 but not Th17 cells drive an M1 response in microglia
Cuprizone [Bis(Cyclohexylidenehydrazide)] is Selectively Toxic for Mature Oligodendrocytes
Effects of Murine and Human Bone Marrow-Derived Mesenchymal Stem Cells on Cuprizone Induced Demyelination
Astrocytes regulate myelin clearance through recruitment of microglia during cuprizone-induced demyelination