SummaryIn contrast to mammals, zebrafish regenerate spinal motor neurons. During regeneration, developmental signals are re-deployed. Here, we show that, during development, diffuse serotonin promotes spinal motor neuron generation from pMN progenitor cells, leaving interneuron numbers unchanged. Pharmacological manipulations and receptor knockdown indicate that serotonin acts at least in part via 5-HT1A receptors. In adults, serotonin is supplied to the spinal cord mainly (90%) by descending axons from the brain. After a spinal lesion, serotonergic axons degenerate caudal to the lesion but sprout rostral to it. Toxin-mediated ablation of serotonergic axons also rostral to the lesion impaired regeneration of motor neurons only there. Conver...
International audience: In non-mammalian vertebrates, serotonin (5-HT)-producing neurons exist in th...
Serotonin (5−HT) plays an important role in shaping the activity of the spinal networks underlying l...
In contrast to mammals, adult zebrafish display cellular regeneration of lost motor neurons and ach...
The hallmark of an adult mammalian central nervous system is the inability to regenerate after an i...
Coordinated development of brain stem and spinal target neurons is pivotal for the emergence of a pr...
Classical neurotransmitters are mainly known for their roles as neuromodulators, but they also play ...
In adult zebrafish, relatively quiescent progenitor cells show lesion-induced generation of motor ne...
Zebrafish, in contrast to mammals, are capable of functional spinal cord regeneration. Spinal motor ...
In adult zebrafish, relatively quiescent progenitor cells show lesion-induced generation of motor ne...
In contrast to mammals, adult zebrafish are able to regenerate motor neurons and regain swimming ab...
The zebrafish is a vertebrate organism capable of regenerating many of its organs. Notably, it can ...
SummaryCoordinated development of brain stem and spinal target neurons is pivotal for the emergence ...
Zebrafish, in contrast to mammals, are capable of functional regeneration after complete transection...
The neurotransmitter serotonin has been implicated in a range of complex neurological disorders link...
Unlike mammals, zebrafish have a remarkable capacity to regenerate the central nervous system. Foll...
International audience: In non-mammalian vertebrates, serotonin (5-HT)-producing neurons exist in th...
Serotonin (5−HT) plays an important role in shaping the activity of the spinal networks underlying l...
In contrast to mammals, adult zebrafish display cellular regeneration of lost motor neurons and ach...
The hallmark of an adult mammalian central nervous system is the inability to regenerate after an i...
Coordinated development of brain stem and spinal target neurons is pivotal for the emergence of a pr...
Classical neurotransmitters are mainly known for their roles as neuromodulators, but they also play ...
In adult zebrafish, relatively quiescent progenitor cells show lesion-induced generation of motor ne...
Zebrafish, in contrast to mammals, are capable of functional spinal cord regeneration. Spinal motor ...
In adult zebrafish, relatively quiescent progenitor cells show lesion-induced generation of motor ne...
In contrast to mammals, adult zebrafish are able to regenerate motor neurons and regain swimming ab...
The zebrafish is a vertebrate organism capable of regenerating many of its organs. Notably, it can ...
SummaryCoordinated development of brain stem and spinal target neurons is pivotal for the emergence ...
Zebrafish, in contrast to mammals, are capable of functional regeneration after complete transection...
The neurotransmitter serotonin has been implicated in a range of complex neurological disorders link...
Unlike mammals, zebrafish have a remarkable capacity to regenerate the central nervous system. Foll...
International audience: In non-mammalian vertebrates, serotonin (5-HT)-producing neurons exist in th...
Serotonin (5−HT) plays an important role in shaping the activity of the spinal networks underlying l...
In contrast to mammals, adult zebrafish display cellular regeneration of lost motor neurons and ach...