AbstractTreatment with DAPT, an inhibitor of the Notch-activating enzyme, γ-secretase is known to reduce damage to ischemic brain. However, the molecular mechanisms supporting this therapeutic effect are not fully understood. Here we demonstrated that Notch/RBP-J signaling is activated in NG2+ glial progenitors and reactive astrocytes such as GFAP+ cells, Nestin+ cells and RC2+ cells, using Notch/RBP-J signaling reporter mice. 3-day DAPT treatment reduced the number of reactive astrocytes but not NG2+ glial progenitors. BrdU labeling experiments have shown that this reduction was due to decreased proliferation of reactive astrocytes. DAPT inhibited nuclear-translocation of Olig2, which is indispensable for proliferation and differentiation ...
This study aims to investigate the roles of the Notch-Hes1 pathway in the advanced glycation end pro...
Notch signaling regulates proliferation, differentiation and survival of neural stem cells (NSCs) in...
Notch-1 (Notch) is a cell surface receptor that regulates cell-fate decisions in the developing nerv...
Stroke or cerebral vascular accident (CVA) is the 4th leading cause of mortality and the principle c...
In the nervous system, Notch pathway has a prominent role in the control of neuronal morphology and ...
Background and Purpose-Activation of Notch worsens ischemic brain damage as antisense knockdown or p...
Stroke triggers neurogenesis in the striatum in mice, with new neurons deriving in part from the nea...
Background and Purpose-Activation of Notch worsens ischemic brain damage as antisense knockdown or p...
Constitutive activation of the Notch pathway can promote gliogenesis by peripheral (PNS) and central...
The mechanisms by which neural and glial progenitor cells in the adult brain respond to tissue injur...
In the developing nervous system the Notch signaling pathway has recently been shown to be necessary...
AbstractIn the developing nervous system, the balance between proliferation and differentiation is c...
Notch-1 (Notch) is a cell surface receptor that regulates cell-fate decisions in the developing nerv...
Notch-1 (Notch) is a cell surface receptor that regulates cell-fate decisions in the developing nerv...
AbstractNotch1 has been shown to induce glia in the peripheral nervous system. However, it has not b...
This study aims to investigate the roles of the Notch-Hes1 pathway in the advanced glycation end pro...
Notch signaling regulates proliferation, differentiation and survival of neural stem cells (NSCs) in...
Notch-1 (Notch) is a cell surface receptor that regulates cell-fate decisions in the developing nerv...
Stroke or cerebral vascular accident (CVA) is the 4th leading cause of mortality and the principle c...
In the nervous system, Notch pathway has a prominent role in the control of neuronal morphology and ...
Background and Purpose-Activation of Notch worsens ischemic brain damage as antisense knockdown or p...
Stroke triggers neurogenesis in the striatum in mice, with new neurons deriving in part from the nea...
Background and Purpose-Activation of Notch worsens ischemic brain damage as antisense knockdown or p...
Constitutive activation of the Notch pathway can promote gliogenesis by peripheral (PNS) and central...
The mechanisms by which neural and glial progenitor cells in the adult brain respond to tissue injur...
In the developing nervous system the Notch signaling pathway has recently been shown to be necessary...
AbstractIn the developing nervous system, the balance between proliferation and differentiation is c...
Notch-1 (Notch) is a cell surface receptor that regulates cell-fate decisions in the developing nerv...
Notch-1 (Notch) is a cell surface receptor that regulates cell-fate decisions in the developing nerv...
AbstractNotch1 has been shown to induce glia in the peripheral nervous system. However, it has not b...
This study aims to investigate the roles of the Notch-Hes1 pathway in the advanced glycation end pro...
Notch signaling regulates proliferation, differentiation and survival of neural stem cells (NSCs) in...
Notch-1 (Notch) is a cell surface receptor that regulates cell-fate decisions in the developing nerv...