Axon regeneration in the CNS is largely unsuccessful due to excess inhibitory extrinsic factors within lesion sites together with an intrinsic inability of neurons to regrow following injury. Recent work demonstrates that forced expression of certain neuronal transmembrane receptors can recapitulate neuronal growth resulting in successful growth within and through inhibitory lesion environments. More specifically, neuronal expression of integrin receptors such as alpha9beta1 integrin which binds the extracellular matrix glycoprotein tenascin-C, trk receptors such as trkB which binds the neurotrophic factor BDNF, and receptor PTPσ which binds chondroitin sulphate proteoglycans, have all been show to significantly enhance regeneration of inju...
Damaged CNS axons are prevented from regenerating by an environment containing many inhibitory facto...
UNLABELLED: After CNS injury, axon regeneration is blocked by an inhibitory environment consisting o...
UNLABELLED: After CNS injury, axon regeneration is blocked by an inhibitory environment consisting o...
Axon regeneration in the CNS is largely unsuccessful due to excess inhibitory extrinsic factors with...
Axon regeneration in the CNS is largely unsuccessful due to excess inhibitory extrinsic factors with...
Axon regeneration in the CNS is largely unsuccessful due to excess inhibitory extrinsic factors with...
Each neuronal subtype is distinct in how it develops, responds to environmental cues, and whether it...
Each neuronal subtype is distinct in how it develops, responds to environmental cues, and whether it...
Integrins are cell surface receptors that form the link between extracellular matrix molecules of th...
Integrins are cell surface receptors that form the link between extracellular matrix molecules of th...
Integrins are cell surface receptors that form the link between extracellular matrix molecules of th...
Adult central nervous system (CNS) axons fail to regenerate after injury because of inhibitory facto...
Damaged CNS axons are prevented from regenerating by an environment containing many inhibitory facto...
The regenerative ability of CNS axons decreases with age however this ability remains largely intact...
Abstract After central nervous system (CNS) trauma, axons have a low capacity for regeneration. Rege...
Damaged CNS axons are prevented from regenerating by an environment containing many inhibitory facto...
UNLABELLED: After CNS injury, axon regeneration is blocked by an inhibitory environment consisting o...
UNLABELLED: After CNS injury, axon regeneration is blocked by an inhibitory environment consisting o...
Axon regeneration in the CNS is largely unsuccessful due to excess inhibitory extrinsic factors with...
Axon regeneration in the CNS is largely unsuccessful due to excess inhibitory extrinsic factors with...
Axon regeneration in the CNS is largely unsuccessful due to excess inhibitory extrinsic factors with...
Each neuronal subtype is distinct in how it develops, responds to environmental cues, and whether it...
Each neuronal subtype is distinct in how it develops, responds to environmental cues, and whether it...
Integrins are cell surface receptors that form the link between extracellular matrix molecules of th...
Integrins are cell surface receptors that form the link between extracellular matrix molecules of th...
Integrins are cell surface receptors that form the link between extracellular matrix molecules of th...
Adult central nervous system (CNS) axons fail to regenerate after injury because of inhibitory facto...
Damaged CNS axons are prevented from regenerating by an environment containing many inhibitory facto...
The regenerative ability of CNS axons decreases with age however this ability remains largely intact...
Abstract After central nervous system (CNS) trauma, axons have a low capacity for regeneration. Rege...
Damaged CNS axons are prevented from regenerating by an environment containing many inhibitory facto...
UNLABELLED: After CNS injury, axon regeneration is blocked by an inhibitory environment consisting o...
UNLABELLED: After CNS injury, axon regeneration is blocked by an inhibitory environment consisting o...