Bridging of long peripheral nerve gaps remains a significant clinical challenge. Electrospun nanofibers have been used to direct and enhance neurite extension in vitro and in vivo. While it is well established that oriented fibers influence neurite outgrowth and Schwann cell migration, the mechanisms by which they influence these cells are still unclear. In this study, thin films consisting of aligned poly-acrylonitrile methylacrylate (PAN-MA) fibers or solvent casted smooth, PAN-MA films were fabricated to investigate the potential role of differential protein adsorption on topography-dependent neural cell responses. Aligned nanofiber films promoted enhanced adsorption of fibronectin compared to smooth films. Studies employing function-blo...
Fibronectin (FN) fibrillogenesis is a cell-mediated process involving integrin activation that resul...
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...
Bridging of long peripheral nerve gaps remains a significant clinical challenge. Electrospun nanofib...
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 ...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
Aligned, electrospun fibers have shown great promise in facilitating directed neurite outgrowth with...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
Aim: Electrospun nanofibers represent potent guidance substrates for nervous tissue repair. Developm...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
Synergistic intercellular interactions have been widely acknowledged in tuning functional cell behav...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
Fibronectin (FN) fibrillogenesis is a cell-mediated process involving integrin activation that resul...
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...
Bridging of long peripheral nerve gaps remains a significant clinical challenge. Electrospun nanofib...
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 ...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
Aligned, electrospun fibers have shown great promise in facilitating directed neurite outgrowth with...
Polymer nanofibers and microfibers are an invaluable tool to biomedical research. Due to their vers...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
Aim: Electrospun nanofibers represent potent guidance substrates for nervous tissue repair. Developm...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
Synergistic intercellular interactions have been widely acknowledged in tuning functional cell behav...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
Fibronectin (FN) fibrillogenesis is a cell-mediated process involving integrin activation that resul...
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...