Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for neural tissue engineering. Many studies have demonstrated that the nanofibers could guide the neurites to extend along the direction of alignment, resembling the native hierarchy of the nerve tissue. However, the contact cues provided by the nanofibers can be far more complicated than just guiding the neurites to extend along them. In the current study, we used dorsal root ganglia as a model system to systematically investigate the interactions between neurites and uniaxially aligned nanofibers. We demonstrated, for the first time, that the neurites could not only project along the nanofibers, but also be directed to grow along a direction pe...
Here we describe our attempts to study the interaction of nanomodified surfaces with neurons and mac...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
lectrospun nanofibers have been ex-tensively explored as tissue engineer-ing scaffolds for repairing...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Aim: Electrospun nanofibers represent potent guidance substrates for nervous tissue repair. Developm...
Bridging of long peripheral nerve gaps remains a significant clinical challenge. Electrospun nanofib...
Bridging of long peripheral nerve gaps remains a significant clinical challenge. Electrospun nanofib...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Compared to the nerve guidance conduits (NGCs) constructed from a single layer of aligned nanofibers...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Nerve regeneration in an injured spinal cord is often restricted, contributing to the devastating ou...
Here we describe our attempts to study the interaction of nanomodified surfaces with neurons and mac...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Electrospun nanofibers with uniaxial alignment have recently gained its popularity as scaffolds for ...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
lectrospun nanofibers have been ex-tensively explored as tissue engineer-ing scaffolds for repairing...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Aim: Electrospun nanofibers represent potent guidance substrates for nervous tissue repair. Developm...
Bridging of long peripheral nerve gaps remains a significant clinical challenge. Electrospun nanofib...
Bridging of long peripheral nerve gaps remains a significant clinical challenge. Electrospun nanofib...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Compared to the nerve guidance conduits (NGCs) constructed from a single layer of aligned nanofibers...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...
Nerve regeneration in an injured spinal cord is often restricted, contributing to the devastating ou...
Here we describe our attempts to study the interaction of nanomodified surfaces with neurons and mac...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
Central and peripheral neural injuries are traumatic and can lead to loss of motor and sensory funct...