Aligned, electrospun fibers have shown great promise in facilitating directed neurite outgrowth within cell and animal models. While electrospun fiber diameter does influence cellular behavior, it is not known how aligned, electrospun fiber scaffolds of differing diameter influence neurite outgrowth and Schwann cell (SC) migration. Thus, the goal of this study was to first create highly aligned, electrospun fiber scaffolds of varying diameter and then assess neurite and SC behavior from dorsal root ganglia (DRG) explants. Three groups of highly aligned, electrospun poly-L-lactic acid (PLLA) fibers were created (1325 + 383 nm, large diameter fibers; 759 + 179 nm, intermediate diameter fibers; and 293 + 65 nm, small diameter fibers). Embryoni...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
The surface of aligned, electrospun poly-L-lactic acid (PLLA) fibers was chemically modified to dete...
The purpose of this work was to investigate the potential biomedical application of novel aligned el...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Aligned, electrospun polymer fibers have shown considerable promise in directing regenerating axons ...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
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 ...
To test a 3D approach for neural network formation, alignment, and patterning that is reproducible a...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
Our long-term goal is to develop an artificial implant as a conduit for axonal regeneration after pe...
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...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
The surface of aligned, electrospun poly-L-lactic acid (PLLA) fibers was chemically modified to dete...
The purpose of this work was to investigate the potential biomedical application of novel aligned el...
Three aligned, electrospun fiber scaffolds with unique surface features were created from poly-L-lac...
Aligned, electrospun polymer fibers have shown considerable promise in directing regenerating axons ...
Nerve injury, a significant cause of disability, may be treated more effectively using nerve guidanc...
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 ...
To test a 3D approach for neural network formation, alignment, and patterning that is reproducible a...
Electrospun fibrous substrates mimicking extracellular matrices can be prepared by electrospinning, ...
Electrospun nanofibers can be readily assembled into various types of scaffolds for applications in ...
Our long-term goal is to develop an artificial implant as a conduit for axonal regeneration after pe...
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...
Over the past 5 decades, there has been a drive to apply technology to enhance\ud neural regeneratio...
Over the past 5 decades, there has been a drive to apply technology to enhance neural regeneration i...
The surface of aligned, electrospun poly-L-lactic acid (PLLA) fibers was chemically modified to dete...
The purpose of this work was to investigate the potential biomedical application of novel aligned el...