AbstractMAG is a potent inhibitor of axonal regeneration. Here, inhibition by MAG, and myelin in general, is blocked if neurons are exposed to neurotrophins before encountering the inhibitor; priming cerebellar neurons with BDNF or GDNF, but not NGF, or priming DRG neurons with any of these neurotrophins blocks inhibition by MAG/myelin. Dibutyryl cAMP also overcomes inhibition by MAG/myelin, and cAMP is elevated by neurotrophins. A PKA inhibitor present during priming abrogates the block of inhibition. Finally, if neurons are exposed to MAG/myelin and neurotrophins simultaneously, but with the Gi protein inhibitor, inhibition is blocked. We suggest that priming neurons with particular neurotrophins elevates cAMP and activates PKA, which blo...
In vitro, cyclic AMP (cAMP) elevation alters neuronal responsiveness to diffusible growth factors an...
Chondroitin sulfate proteoglycans (CSPGs) and myelin-based inhibitors are the most studied inhibitor...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
AbstractMAG is a potent inhibitor of axonal regeneration. Here, inhibition by MAG, and myelin in gen...
AbstractMyelin inhibitors, including MAG, are major impediments to CNS regeneration. However, CNS ax...
Unlike neonatal axons, mammalian adult axons of the CNS do not regenerate after injury. This develop...
AbstractElevation of cAMP can overcome myelin inhibitors to encourage regeneration of the CNS. We sh...
Pioneering studies conducted in the 1980’s laid the foundation for the hypothesis that axonal regene...
In vitro, cAMP elevation alters neuronal responsiveness to diffusible growth factors and overcomes m...
AbstractInhibitors in myelin play a major role in preventing spontaneous axonal regeneration after C...
Adult mammalian central nervous system (CNS) axons have a limited regrowth capacity following injury...
[eng] The adult central nervous system (CNS) has a very little capability to regrow its connections ...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
Axonal injury causes fatal damage to the neuron because of the poor regrowth of the injured axon. Th...
AbstractThe myelin-associated glycoprotein (MAG) has been shown to be inhibitory for certain neurons...
In vitro, cyclic AMP (cAMP) elevation alters neuronal responsiveness to diffusible growth factors an...
Chondroitin sulfate proteoglycans (CSPGs) and myelin-based inhibitors are the most studied inhibitor...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
AbstractMAG is a potent inhibitor of axonal regeneration. Here, inhibition by MAG, and myelin in gen...
AbstractMyelin inhibitors, including MAG, are major impediments to CNS regeneration. However, CNS ax...
Unlike neonatal axons, mammalian adult axons of the CNS do not regenerate after injury. This develop...
AbstractElevation of cAMP can overcome myelin inhibitors to encourage regeneration of the CNS. We sh...
Pioneering studies conducted in the 1980’s laid the foundation for the hypothesis that axonal regene...
In vitro, cAMP elevation alters neuronal responsiveness to diffusible growth factors and overcomes m...
AbstractInhibitors in myelin play a major role in preventing spontaneous axonal regeneration after C...
Adult mammalian central nervous system (CNS) axons have a limited regrowth capacity following injury...
[eng] The adult central nervous system (CNS) has a very little capability to regrow its connections ...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
Axonal injury causes fatal damage to the neuron because of the poor regrowth of the injured axon. Th...
AbstractThe myelin-associated glycoprotein (MAG) has been shown to be inhibitory for certain neurons...
In vitro, cyclic AMP (cAMP) elevation alters neuronal responsiveness to diffusible growth factors an...
Chondroitin sulfate proteoglycans (CSPGs) and myelin-based inhibitors are the most studied inhibitor...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...