The generation of complex three-dimensional bioengineered scaffolds that are capable of mimicking the molecular and topographical cues of the extracellular matrix found in native tissues is a field of expanding research. The systematic development of such scaffolds requires the characterisation of cell behaviour in response to the individual components of the scaffold. In the present investigation, we studied cell-substrate interactions between purified populations of Schwann cells and three-dimensional fibrin hydrogel scaffolds, in the presence or absence of multiple layers of highly orientated electrospun polycaprolactone nanofibres. Embedded Schwann cells remained viable within the fibrin hydrogel for up to 7days (the longest time studie...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
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...
The generation of complex three-dimensional bioengineered scaffolds that are capable of mimicking th...
The generation of complex three-dimensional bioengineered scaffolds that are capable of mimicking th...
The generation of complex three-dimensional bioengineered scaffolds that are capable of mimicking th...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Peripheral nerve injuries (PNI) causing gaps larger than a few millimeters require the interposition...
Aim: Electrospun nanofibers represent potent guidance substrates for nervous tissue repair. Developm...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Conference on 3D Cell Cultures as advanced model systems for understanding of diseases, compound tes...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
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...
The generation of complex three-dimensional bioengineered scaffolds that are capable of mimicking th...
The generation of complex three-dimensional bioengineered scaffolds that are capable of mimicking th...
The generation of complex three-dimensional bioengineered scaffolds that are capable of mimicking th...
The fundamental understanding of cell-material interactions plays a central role in the development ...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Peripheral nerve injuries (PNI) causing gaps larger than a few millimeters require the interposition...
Aim: Electrospun nanofibers represent potent guidance substrates for nervous tissue repair. Developm...
Along with continuous research in biotechnology, there is a growing demand for cell culture platform...
BACKGROUND: Three-dimensional (3D) in vitro models have been developed into more in vivo resembling ...
Conference on 3D Cell Cultures as advanced model systems for understanding of diseases, compound tes...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
With the increasing applications of electrospun scaffolds in neural tissue engineering, this thesis ...
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...