SummaryHow aging impacts axon regeneration after CNS injury is not known. We assessed the impact of age on axon regeneration induced by Pten deletion in corticospinal and rubrospinal neurons, two neuronal populations with distinct innate regenerative abilities. As in young mice, Pten deletion in older mice remains effective in preventing axotomy-induced decline in neuron-intrinsic growth state, as assessed by mTOR activity, neuronal soma size, and axonal growth proximal to a spinal cord injury. However, axonal regeneration distal to injury is greatly diminished, accompanied by increased expression of astroglial and inflammatory markers at the injury site. Thus, the mammalian CNS undergoes an age-dependent decline in axon regeneration, as re...
The limited ability for injured adult axons to regenerate is a major cause for limited functional re...
SummaryAxon regeneration in the CNS requires reactivating injured neurons’ intrinsic growth state an...
Axons in the adult mammalian central nervous system fail to regenerate after spinal cord injury. Neu...
SummaryThe regenerative capacity of the peripheral nervous system declines with age. Why this occurs...
SummaryThe ability of injured axons to regenerate declines with age, yet the mechanisms that regulat...
Injuries to peripheral nerves can cause paralysis and sensory disturbances, but such functional impa...
Age is an important consideration for recovery and repair after spinal cord injury. Spinal cord inju...
Axon regeneration capacity often declines with age. One might assume that loss of regeneration is an...
The regenerative capacity of the peripheral nervous system declines with age. Why this occurs, howev...
Spinal cord injury (SCI) results in paralysis due in part to the inability of central nervous system...
Regeneration of the injured adult central nervous system is limited. The phosphatase and tensin homo...
AbstractNeurons grow during development and extend long axons to make contact with their targets wit...
In our ever-aging world population, the risk of age-related neuropathies has been increasing, repres...
Damage to the central nervous system (CNS) is one of the leading causes of morbidity and mortality i...
Injury to the brain and spinal cord has devastating consequences because adult central nervous syste...
The limited ability for injured adult axons to regenerate is a major cause for limited functional re...
SummaryAxon regeneration in the CNS requires reactivating injured neurons’ intrinsic growth state an...
Axons in the adult mammalian central nervous system fail to regenerate after spinal cord injury. Neu...
SummaryThe regenerative capacity of the peripheral nervous system declines with age. Why this occurs...
SummaryThe ability of injured axons to regenerate declines with age, yet the mechanisms that regulat...
Injuries to peripheral nerves can cause paralysis and sensory disturbances, but such functional impa...
Age is an important consideration for recovery and repair after spinal cord injury. Spinal cord inju...
Axon regeneration capacity often declines with age. One might assume that loss of regeneration is an...
The regenerative capacity of the peripheral nervous system declines with age. Why this occurs, howev...
Spinal cord injury (SCI) results in paralysis due in part to the inability of central nervous system...
Regeneration of the injured adult central nervous system is limited. The phosphatase and tensin homo...
AbstractNeurons grow during development and extend long axons to make contact with their targets wit...
In our ever-aging world population, the risk of age-related neuropathies has been increasing, repres...
Damage to the central nervous system (CNS) is one of the leading causes of morbidity and mortality i...
Injury to the brain and spinal cord has devastating consequences because adult central nervous syste...
The limited ability for injured adult axons to regenerate is a major cause for limited functional re...
SummaryAxon regeneration in the CNS requires reactivating injured neurons’ intrinsic growth state an...
Axons in the adult mammalian central nervous system fail to regenerate after spinal cord injury. Neu...