In the pMN domain of the spinal cord, Notch signaling regulates the balance between motor neuron differentiation and maintenance of the progenitor state for later oligodendrocyte differentiation. Here, we sought to study the role of Notch signaling in regulation of the switch from the pMN progenitor state to differentiated motor neurons in a human model system. Human embryonic stem cells (hESCs) were directed to differentiate to pMN‐like progenitor cells by the inductive action of retinoic acid and a Shh agonist, purmorphamine. We found that the expression of the Notch signaling effector Hes5 was induced in hESC‐derived pMN‐like progenitors and remained highly expressed when they were cultured under conditions favoring motor neuron differen...
AbstractNotch signaling is involved in a variety of cell-fate decisions during development. Here we ...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
The generation of the post-cranial embryonic body relies on the coordinated production of spinal cor...
Throughout the developing spinal cord, Olig2+ progenitors in the motor neuron progenitor domain give...
SummaryThe motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes...
The motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes of mot...
The Notch signaling pathway plays a variety of roles in cell fate decisions during development. Prev...
We have selectively inhibited Notch1 signaling in oligodendrocyte precursors (OPCs) using the Cre/lo...
AbstractIn the developing nervous system, the balance between proliferation and differentiation is c...
Elaboration of protocols for differentiation of human pluripotent stem cells to dopamine neurons is ...
This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 ...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
SummaryExpression of the Notch effector gene Hes1 is required for maintenance of neural progenitors ...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
SummaryThe ventral spinal cord generates multiple inhibitory and excitatory interneuron subtypes fro...
AbstractNotch signaling is involved in a variety of cell-fate decisions during development. Here we ...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
The generation of the post-cranial embryonic body relies on the coordinated production of spinal cor...
Throughout the developing spinal cord, Olig2+ progenitors in the motor neuron progenitor domain give...
SummaryThe motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes...
The motor neuron progenitor domain in the ventral spinal cord gives rise to multiple subtypes of mot...
The Notch signaling pathway plays a variety of roles in cell fate decisions during development. Prev...
We have selectively inhibited Notch1 signaling in oligodendrocyte precursors (OPCs) using the Cre/lo...
AbstractIn the developing nervous system, the balance between proliferation and differentiation is c...
Elaboration of protocols for differentiation of human pluripotent stem cells to dopamine neurons is ...
This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 ...
In the developing nervous system, differentiating neurons express Delta and activate Notch signaling...
SummaryExpression of the Notch effector gene Hes1 is required for maintenance of neural progenitors ...
Activation of Notch1 signaling in neural progenitor cells (NPCs) induces self-renewal and inhibits n...
SummaryThe ventral spinal cord generates multiple inhibitory and excitatory interneuron subtypes fro...
AbstractNotch signaling is involved in a variety of cell-fate decisions during development. Here we ...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
The generation of the post-cranial embryonic body relies on the coordinated production of spinal cor...