Poster Presentation 1Schwann cell-seeded guidance channels have been exploited to bridge and guide axonal re-growth across gaps in lesioned nerves. By orienting the Schwann cell growth on aligned nanofibers, we hypothesized that axonal growth can be guided along the designated direction towards the target. Chitosan was the choice scaffold material given its biocompatibility and the tunable susceptibility to biodegradation. Chitosan was dissolved in trifluoroacetic acid/methylene chloride solution and was electrospun onto a high speed rotating drum. Stability of the chitosan fibers in aqueous, physiological environment was achieved with the use of sodium carbonate to neutralize residual acidity in the chitosan fiber preparation. S...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Developments in tissue engineering yield biomaterials with different supporting strategies to promot...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
Schwann cell-seeded guidance channels have been exploited to bridge and guide axonal re-growth acros...
Conference on 3D Cell Cultures as advanced model systems for understanding of diseases, compound tes...
Poster presentation - Theme 5: NeuroscienceSchwann cell-seeded guidance channels have been exploited...
Conference Theme: A Century of Advances in Physiology, Biophysics and Neuroscienc
Peripheral nerve injury is a critical problem that affects more than 1 million people worldwide ever...
Peripheral nerve injuries are a common type of injury around the world, affecting more than 1 millio...
This study assesses the ability and potential of carbon nanotube (CNT)/ chitosan to guide axon re-gr...
Compared to the nerve guidance conduits (NGCs) constructed from a single layer of aligned nanofibers...
Synergistic intercellular interactions have been widely acknowledged in tuning functional cell behav...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Developments in tissue engineering yield biomaterials with different supporting strategies to promot...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
Schwann cell-seeded guidance channels have been exploited to bridge and guide axonal re-growth acros...
Conference on 3D Cell Cultures as advanced model systems for understanding of diseases, compound tes...
Poster presentation - Theme 5: NeuroscienceSchwann cell-seeded guidance channels have been exploited...
Conference Theme: A Century of Advances in Physiology, Biophysics and Neuroscienc
Peripheral nerve injury is a critical problem that affects more than 1 million people worldwide ever...
Peripheral nerve injuries are a common type of injury around the world, affecting more than 1 millio...
This study assesses the ability and potential of carbon nanotube (CNT)/ chitosan to guide axon re-gr...
Compared to the nerve guidance conduits (NGCs) constructed from a single layer of aligned nanofibers...
Synergistic intercellular interactions have been widely acknowledged in tuning functional cell behav...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Developments in tissue engineering yield biomaterials with different supporting strategies to promot...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...