Spinal cord injuries (SCIs) are followed by a complex series of events that contribute to the failure of regeneration. To date, there is no robust treatment that can restore the injury-induced loss of function. Since damaged spinal axons do not spontaneously regenerate in their native inhibitory microenvironment, a combined application of biomaterials and neurotrophic factors that induce nerve regeneration emerges as an attractive treatment for SCIs. In this study, we report the novel use of a three-dimensional (3D) hybrid scaffold to provide contact guidance for regrowth of axons <i>in vivo</i>. The scaffold comprises 3D aligned sparsely distributed poly(ε-caprolactone-<i>co</i>-ethyl ethylene phosphate) nanofibers that are supported and ...
Nerve regeneration after spinal cord injuries (SCI) remains suboptimal despite recent advances in th...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Spinal cord injuries (SCIs) are followed by a complex series of events that contribute to the failur...
Spinal cord injuries (SCI) often lead to persistent neurological dysfunction due to failure in axon ...
Spinal cord injuries (SCI) often lead to persistent neurological dysfunction due to failure in axon ...
Spinal cord injuries (SCI) are followed by a complex series of events that contribute to the failure...
Spinal cord injuries (SCI) are followed by a complex series of events that contribute to the failure...
Nerve regeneration in an injured spinal cord is often restricted, contributing to the devastating ou...
Restoration of function following damage to the central nervous system (CNS) is severely restricted ...
Nerve regeneration in an injured spinal cord is often restricted, contributing to the devastating ou...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
Nerve regeneration after spinal cord injuries (SCI) remains suboptimal despite recent advances in th...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Spinal cord injuries (SCIs) are followed by a complex series of events that contribute to the failur...
Spinal cord injuries (SCI) often lead to persistent neurological dysfunction due to failure in axon ...
Spinal cord injuries (SCI) often lead to persistent neurological dysfunction due to failure in axon ...
Spinal cord injuries (SCI) are followed by a complex series of events that contribute to the failure...
Spinal cord injuries (SCI) are followed by a complex series of events that contribute to the failure...
Nerve regeneration in an injured spinal cord is often restricted, contributing to the devastating ou...
Restoration of function following damage to the central nervous system (CNS) is severely restricted ...
Nerve regeneration in an injured spinal cord is often restricted, contributing to the devastating ou...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
Nerve regeneration after spinal cord injuries (SCI) remains suboptimal despite recent advances in th...
The regrowth of severed axons is fundamental to reestablish motor control after spinal-cord injury (...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...