Sympathetic neurons and endocrine chromaffin cells of the adrenal medulla are catecholaminergic cells that derive from the neural crest. According to the classic model, they develop from a common sympathoadrenal (SA) progenitor that has the ability to differentiate into both sympathetic neurons and chromaffin cells depending on signals provided by their final environment. Our previous data revealed that a single premigratory neural crest cell can give rise to both sympathetic neurons and chromaffin cells, indicating that the fate decision between these cell types occurs after delamination. A more recent study demonstrated that at least half of chromaffin cells arise from a later contribution by Schwann cell precursors. Since Notch signallin...
International audienceThe adrenal medullary tissue contributes to maintain body homeostasis in react...
The adrenal medulla is composed of neuroendocrine chromaffin cells that secrete adrenaline into the ...
AbstractThe genesis of vertebrate peripheral ganglia poses the problem of how multipotent neural cre...
The sympathetic division of the autonomic nervous system includes a variety of cells including neuro...
Our laboratory has been interested in the cellular and molecular mechanisms that govern the way cell...
AbstractDuring the past years considerable progress has been made in understanding the generation of...
Adrenal medullary endocrine (chromaffin) cells and sympathetic neurons both derive from the neural c...
Adrenal chromaffin cells and sympathetic neurons synthesize and release catecholamines, and both cel...
Neural crest cells (NCCs) are highly migratory progenitor cells that give rise to a vast array of di...
Notch activation has been widely observed to regulate cell fate determination in the nervous system ...
AbstractThe hypothalamic-pituitary-adrenal (HPA) axis is an important regulator of energy balance, i...
Chromaffin cells of the adrenal medulla are neural crest-derived cells of the sympathoadrenal lineag...
The neural crest-derived adrenal medulla is closely related to the sympathetic nervous system; howev...
Chromaffin cells and sympathetic neurons develop from a common neural crest-derived progenitor cell....
The development of successful cell-replacement therapies in the nervous system would be enhanced by ...
International audienceThe adrenal medullary tissue contributes to maintain body homeostasis in react...
The adrenal medulla is composed of neuroendocrine chromaffin cells that secrete adrenaline into the ...
AbstractThe genesis of vertebrate peripheral ganglia poses the problem of how multipotent neural cre...
The sympathetic division of the autonomic nervous system includes a variety of cells including neuro...
Our laboratory has been interested in the cellular and molecular mechanisms that govern the way cell...
AbstractDuring the past years considerable progress has been made in understanding the generation of...
Adrenal medullary endocrine (chromaffin) cells and sympathetic neurons both derive from the neural c...
Adrenal chromaffin cells and sympathetic neurons synthesize and release catecholamines, and both cel...
Neural crest cells (NCCs) are highly migratory progenitor cells that give rise to a vast array of di...
Notch activation has been widely observed to regulate cell fate determination in the nervous system ...
AbstractThe hypothalamic-pituitary-adrenal (HPA) axis is an important regulator of energy balance, i...
Chromaffin cells of the adrenal medulla are neural crest-derived cells of the sympathoadrenal lineag...
The neural crest-derived adrenal medulla is closely related to the sympathetic nervous system; howev...
Chromaffin cells and sympathetic neurons develop from a common neural crest-derived progenitor cell....
The development of successful cell-replacement therapies in the nervous system would be enhanced by ...
International audienceThe adrenal medullary tissue contributes to maintain body homeostasis in react...
The adrenal medulla is composed of neuroendocrine chromaffin cells that secrete adrenaline into the ...
AbstractThe genesis of vertebrate peripheral ganglia poses the problem of how multipotent neural cre...