Dorsal root avulsion results in permanent impairment of sensory functions due to disconnection between the peripheral and central nervous system. Improved strategies are therefore needed to reconnect injured sensory neurons with their spinal cord targets in order to achieve functional repair after brachial and lumbosacral plexus avulsion injuries. Here, we show that sensory functions can be restored in the adult mouse if avulsed sensory fibers are bridged with the spinal cord by human neural progenitor (hNP) transplants. Responses to peripheral mechanical sensory stimulation were significantly improved in transplanted animals. Transganglionic tracing showed host sensory axons only in the spinal cord dorsal horn of treated animals. Immunohis...
Neural progenitor cell/neural stem cell (NPC/NSC) grafts integrate into sites of spinal cord injury ...
Traumatic spinal cord injury results in persistent disability due to disconnection of surviving neur...
In the present study, we transplanted E13.5 spinal cord-derived neural progenitor cells (NPCs) into ...
Dorsal root avulsion results in permanent impairment of sensory functions due to disconnection betwe...
Dorsal root avulsion results in permanent impairment of sensory functions due to disconnection betwe...
Spinal root avulsion leads to paralysis and loss of sensory function. Surgical methods can improve m...
Severe injury may result in disconnection between the peripheral and central nervous system. Regener...
Injury and neurodegenerative conditions of the spinal cord can lead to paralysis and loss of sensati...
After traumatic injuries to the brachial plexus there is a risk that one or more of the spinal roots...
Spinal root avulsion results in paralysis and sensory loss, and is commonly associated with chronic ...
The boundary cap is a transient group of neural crest-derived cells located at the presumptive dorsa...
Neural progenitor cell (NPC) transplantation has high therapeutic potential in neurological disorder...
Spinal cord injury (SCI) disrupts the long axonal tracts of the spinal cord leading to devastating l...
Motor neuron loss is characteristic of cervical spinal cord injury (SCI) and contributes to function...
Summary: Axonal regeneration after spinal cord injury (SCI) can be enhanced by activation of the int...
Neural progenitor cell/neural stem cell (NPC/NSC) grafts integrate into sites of spinal cord injury ...
Traumatic spinal cord injury results in persistent disability due to disconnection of surviving neur...
In the present study, we transplanted E13.5 spinal cord-derived neural progenitor cells (NPCs) into ...
Dorsal root avulsion results in permanent impairment of sensory functions due to disconnection betwe...
Dorsal root avulsion results in permanent impairment of sensory functions due to disconnection betwe...
Spinal root avulsion leads to paralysis and loss of sensory function. Surgical methods can improve m...
Severe injury may result in disconnection between the peripheral and central nervous system. Regener...
Injury and neurodegenerative conditions of the spinal cord can lead to paralysis and loss of sensati...
After traumatic injuries to the brachial plexus there is a risk that one or more of the spinal roots...
Spinal root avulsion results in paralysis and sensory loss, and is commonly associated with chronic ...
The boundary cap is a transient group of neural crest-derived cells located at the presumptive dorsa...
Neural progenitor cell (NPC) transplantation has high therapeutic potential in neurological disorder...
Spinal cord injury (SCI) disrupts the long axonal tracts of the spinal cord leading to devastating l...
Motor neuron loss is characteristic of cervical spinal cord injury (SCI) and contributes to function...
Summary: Axonal regeneration after spinal cord injury (SCI) can be enhanced by activation of the int...
Neural progenitor cell/neural stem cell (NPC/NSC) grafts integrate into sites of spinal cord injury ...
Traumatic spinal cord injury results in persistent disability due to disconnection of surviving neur...
In the present study, we transplanted E13.5 spinal cord-derived neural progenitor cells (NPCs) into ...