Adult brain-derived neural stem cells have acquired a lot of interest as an endurable neuronal cell source that can be used for central nervous system repair in a wide range of neurological disorders such as ischemic stroke. Recently, we identified injury-induced neural stem/progenitor cells in the poststroke murine cerebral cortex. In this study, we show that, after differentiation in vitro, injury-induced neural stem/progenitor cells express pyramidal cell markers Emx1 and CaMKII alpha, as well as mature neuron markers MAP2 and Tuj1. 5-bromo-2-deoxyuridinine-positive neurons in the peristroke cortex also express such pyramidal markers. The presence of newly regenerated pyramidal neurons in the poststroke brain might provide a noninvasive ...
AbstractStem cells within the adult brain can be stimulated by injury and growth factor treatment to...
Stem cell-based approaches to restore function after stroke through replacement of dead neurons requ...
Recent evidence suggests that neural stem/precursor cells (NPCs) promote recovery in animal models w...
Adult brain-derived neural stem cells have acquired a lot of interest as an endurable neuronal cell ...
AbstractThe adult brain is extremely vulnerable to various insults. The recent discovery of neural p...
Neuronal self-renewal following injuries to the adult brain has been clarified by many recent studie...
Increasing evidence shows that neural stem/ progenitor cells (NSPCs) can be activated in the nonconv...
Stroke remains one of the most devastating diseases in industrialized countries. Recanalization of t...
Stroke is one of the leading causes of chronic disability and death in the Western world. Today, no ...
The hippocampus is the most susceptible region of the brain to ischemic lesion, with highly vulnerab...
Stem cell-based approaches to restore function after stroke through replacement of dead neurons requ...
No effective therapy is currently available to promote recovery following ischemic stroke. Stem cell...
AbstractCell therapy has enormous potential to restore neurological function after stroke. The prese...
The discovery of neural stem cells in the adult brain has led to the promise of utilizing these cell...
Brain damage, such as ischemic stroke, enhances proliferation of neural stem/progenitor cells (NSPCs...
AbstractStem cells within the adult brain can be stimulated by injury and growth factor treatment to...
Stem cell-based approaches to restore function after stroke through replacement of dead neurons requ...
Recent evidence suggests that neural stem/precursor cells (NPCs) promote recovery in animal models w...
Adult brain-derived neural stem cells have acquired a lot of interest as an endurable neuronal cell ...
AbstractThe adult brain is extremely vulnerable to various insults. The recent discovery of neural p...
Neuronal self-renewal following injuries to the adult brain has been clarified by many recent studie...
Increasing evidence shows that neural stem/ progenitor cells (NSPCs) can be activated in the nonconv...
Stroke remains one of the most devastating diseases in industrialized countries. Recanalization of t...
Stroke is one of the leading causes of chronic disability and death in the Western world. Today, no ...
The hippocampus is the most susceptible region of the brain to ischemic lesion, with highly vulnerab...
Stem cell-based approaches to restore function after stroke through replacement of dead neurons requ...
No effective therapy is currently available to promote recovery following ischemic stroke. Stem cell...
AbstractCell therapy has enormous potential to restore neurological function after stroke. The prese...
The discovery of neural stem cells in the adult brain has led to the promise of utilizing these cell...
Brain damage, such as ischemic stroke, enhances proliferation of neural stem/progenitor cells (NSPCs...
AbstractStem cells within the adult brain can be stimulated by injury and growth factor treatment to...
Stem cell-based approaches to restore function after stroke through replacement of dead neurons requ...
Recent evidence suggests that neural stem/precursor cells (NPCs) promote recovery in animal models w...