Neurons in the embryonic and peripheral nervoussystem respond to injury by activating transcriptional programs supportive of axon growth, ultimately resulting in functional recovery. In contrast, neurons in the adult central nervous system (CNS) possess a limited capacity to regenerate axons after injury, fundamentally constraining repair. Activating pro-regenerative gene expression in CNS neurons is a promising therapeutic approach, but progress is hampered by incomplete knowledge of the relevant transcription factors. An emerging hypothesis is that factors implicated in cellular growth and motility outside the nervous system may also control axon growth in neurons. We therefore tested sixty-nine transcription factors, previously identifie...
AbstractNeurons grow during development and extend long axons to make contact with their targets wit...
pre-printAxons of the mammalian CNS lose the ability to regenerate soon after development due to bot...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...
Neurons in the embryonic and peripheral nervoussystem respond to injury by activating transcriptiona...
The ability of the nervous system to repair itself following injury is a remarkable phenomenon, but ...
Axon regeneration in adult central nervous system (CNS) is limited in part by a developmental declin...
Axon regeneration in adult central nervous system (CNS) is limited in part by a developmental declin...
AbstractAxon regeneration in adult central nervous system (CNS) is limited in part by a developmenta...
Axon regeneration in the central nervous system is prevented in part by a developmental decline in t...
AbstractAxon regeneration in adult central nervous system (CNS) is limited in part by a developmenta...
Adult mammalian central nervous system (CNS) neurons are unable to extend axons after injury, partia...
The failure of axon regeneration in the CNS limits recovery from damage and disease. Members of the ...
Injured sensory neurons activate a transcriptional program necessary for robust axon regeneration an...
In contrast to the regeneration-competent peripheral nervous system (PNS), lesions of nerve tracts w...
dissertationHox proteins are homeodomain containing, sequence specific, DNA-binding transcription fa...
AbstractNeurons grow during development and extend long axons to make contact with their targets wit...
pre-printAxons of the mammalian CNS lose the ability to regenerate soon after development due to bot...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...
Neurons in the embryonic and peripheral nervoussystem respond to injury by activating transcriptiona...
The ability of the nervous system to repair itself following injury is a remarkable phenomenon, but ...
Axon regeneration in adult central nervous system (CNS) is limited in part by a developmental declin...
Axon regeneration in adult central nervous system (CNS) is limited in part by a developmental declin...
AbstractAxon regeneration in adult central nervous system (CNS) is limited in part by a developmenta...
Axon regeneration in the central nervous system is prevented in part by a developmental decline in t...
AbstractAxon regeneration in adult central nervous system (CNS) is limited in part by a developmenta...
Adult mammalian central nervous system (CNS) neurons are unable to extend axons after injury, partia...
The failure of axon regeneration in the CNS limits recovery from damage and disease. Members of the ...
Injured sensory neurons activate a transcriptional program necessary for robust axon regeneration an...
In contrast to the regeneration-competent peripheral nervous system (PNS), lesions of nerve tracts w...
dissertationHox proteins are homeodomain containing, sequence specific, DNA-binding transcription fa...
AbstractNeurons grow during development and extend long axons to make contact with their targets wit...
pre-printAxons of the mammalian CNS lose the ability to regenerate soon after development due to bot...
The mammalian nervous system is a highly intricate network consisting of over a hundred billion spec...