Abstract Blocking the function of the myelin protein Nogo-A or its signaling pathway is a promising method to overcome an important neurite growth inhibitory factor of the adult central nervous system (CNS), and to enhance axonal regeneration and plasticity after brain or spinal cord injuries. Several studies have shown increased axonal regeneration and enhanced compensatory sprouting, along with substantially improved functional recovery after treatment with anti-Nogo-A antibodies, Nogo-receptor antagonists, or inhibition of the downstream mediator RhoA/ROCK in adult rodents. Proof-of-concept studies in spinal cord-injured macaque monkeys with anti-Nogo-A antibodies have replicated these findings; recently, clinical trials in spinal cord...
Two hallmarks of chronic multiple sclerosis lesions are the absence of significant spontaneous remye...
AbstractAfter injury, axons of the adult mammalian brain and spinal cord exhibit little regeneration...
AbstractThe failure of regeneration of severed axons in the adult mammalian central nervous system i...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
As humans, we cannot regenerate axons within the central nervous system (CNS), therefore, making any...
AbstractTo investigate the role of the myelin-associated protein Nogo-A on axon sprouting and regene...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
Abstract: As humans, we cannot regenerate axons within the central nervous system (CNS), therefore, ...
Locomotor training on treadmills can improve recovery of stepping in spinal cord injured animals and...
Anti-Nogo-A antibody and chondroitinase ABC (ChABC) enzyme are two promising treatments that promote...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
In spinal cord injured adult mammals, neutralizing the neurite growth inhibitor Nogo-A with antibodi...
After injury, regrowth of axons in mammalian adult central nervous system is highly limited. However...
Two hallmarks of chronic multiple sclerosis lesions are the absence of significant spontaneous remye...
Two hallmarks of chronic multiple sclerosis lesions are the absence of significant spontaneous remye...
AbstractAfter injury, axons of the adult mammalian brain and spinal cord exhibit little regeneration...
AbstractThe failure of regeneration of severed axons in the adult mammalian central nervous system i...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
As humans, we cannot regenerate axons within the central nervous system (CNS), therefore, making any...
AbstractTo investigate the role of the myelin-associated protein Nogo-A on axon sprouting and regene...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
Axonal damage leads to permanent deficits in the adult central nervous system (CNS) not only because...
Abstract: As humans, we cannot regenerate axons within the central nervous system (CNS), therefore, ...
Locomotor training on treadmills can improve recovery of stepping in spinal cord injured animals and...
Anti-Nogo-A antibody and chondroitinase ABC (ChABC) enzyme are two promising treatments that promote...
In rodents and nonhuman primates subjected to spinal cord lesion, neutralizing the neurite growth in...
In spinal cord injured adult mammals, neutralizing the neurite growth inhibitor Nogo-A with antibodi...
After injury, regrowth of axons in mammalian adult central nervous system is highly limited. However...
Two hallmarks of chronic multiple sclerosis lesions are the absence of significant spontaneous remye...
Two hallmarks of chronic multiple sclerosis lesions are the absence of significant spontaneous remye...
AbstractAfter injury, axons of the adult mammalian brain and spinal cord exhibit little regeneration...
AbstractThe failure of regeneration of severed axons in the adult mammalian central nervous system i...