Lesioned axons do not regenerate in the adult mammalian CNS, owing to the over-expression of inhibitory molecules such as myelin-derived proteins or chondroitin sulphate proteoglycans. In order to overcome axon inhibition, strategies based on extrinsic and intrinsic treatments have been developed. For myelin-associated inhibition, blockage with NEP1– 40, receptor bodies or IN-1 antibodies has been used. In addition, endogenous blockage of cell signalling mechanisms induced by myelin-associated proteins is a potential tool for overcoming axon inhibitory signals. We examined the participation of glycogen synthase kinase 3β (GSK3β) and extracellular-related kinase (ERK) 1/2 in axon regeneration failure in lesioned cortical neurons. We also inv...
Adult central nervous system axons show restricted growth and regeneration properties after injury. ...
AbstractThe failure of regeneration of severed axons in the adult mammalian central nervous system i...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
Lesioned axons do not regenerate in the adult mammalian central nervous system, owing to the overexp...
[eng] Lesioned axons do not regenerate in the adult mammalian central nervous system, owing to the o...
Lesioned axons do not regenerate in the adult mammalian central nervous system, owing to the overexp...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
[eng] The adult central nervous system (CNS) has a very little capability to regrow its connections ...
Functional recovery following central nervous system (CNS) trauma is often restricted by stagnant gr...
AbstractAfter injury, axons of the adult mammalian brain and spinal cord exhibit little regeneration...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
Pioneering studies conducted in the 1980’s laid the foundation for the hypothesis that axonal regene...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
AbstractTo investigate the role of the myelin-associated protein Nogo-A on axon sprouting and regene...
The presence of inhibitory molecules is believed to contribute to the failure of axonal regeneration...
Adult central nervous system axons show restricted growth and regeneration properties after injury. ...
AbstractThe failure of regeneration of severed axons in the adult mammalian central nervous system i...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...
Lesioned axons do not regenerate in the adult mammalian central nervous system, owing to the overexp...
[eng] Lesioned axons do not regenerate in the adult mammalian central nervous system, owing to the o...
Lesioned axons do not regenerate in the adult mammalian central nervous system, owing to the overexp...
Adult mammalian central nervous system (CNS) axons have very limited capacity of regrowth after inju...
[eng] The adult central nervous system (CNS) has a very little capability to regrow its connections ...
Functional recovery following central nervous system (CNS) trauma is often restricted by stagnant gr...
AbstractAfter injury, axons of the adult mammalian brain and spinal cord exhibit little regeneration...
AbstractMyelin inhibitors of axonal regeneration, like Nogo and MAG, block regrowth after injury to ...
Pioneering studies conducted in the 1980’s laid the foundation for the hypothesis that axonal regene...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
AbstractTo investigate the role of the myelin-associated protein Nogo-A on axon sprouting and regene...
The presence of inhibitory molecules is believed to contribute to the failure of axonal regeneration...
Adult central nervous system axons show restricted growth and regeneration properties after injury. ...
AbstractThe failure of regeneration of severed axons in the adult mammalian central nervous system i...
AbstractThree different myelin proteins, Nogo, MAG, and OMgp, inhibit regenerating axons after CNS i...