<div><p>Tissue engineering techniques using a combination of polymeric scaffolds and cells represent a promising approach for nerve regeneration. We fabricated electrospun scaffolds by blending of Poly (3-hydroxybutyrate) (PHB) and Poly (3-hydroxy butyrate-co-3- hydroxyvalerate) (PHBV) in different compositions in order to investigate their potential for the regeneration of the myelinic membrane. The thermal properties of the nanofibrous blends was analyzed by differential scanning calorimetry (DSC), which indicated that the melting and glass temperatures, and crystallization degree of the blends decreased as the PHBV weight ratio increased. Raman spectroscopy also revealed that the full width at half height of the band centered at 1725 cm<...
Electrospun nanofibrous scaffolds which can mimic the architecture of the natural extracellular matr...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
Nanotechnology innovations create an exciting focus for research in regenerative medicine. Nanomater...
Tissue engineering techniques using a combination of polymeric scaffolds and cells represent a promi...
Tissue engineering techniques using a combination of polymeric scaffolds and cells represent a promi...
Peripheral nerve injury is a serious clinical problem to be solved. There has been no breakthrough s...
Interactions between Schwann cells (SCs) and scaffolds are important for tissue development during n...
Peripheral nerves have demonstrated the ability to bridge gaps of up to 6 mm. Peripheral Nerve Syste...
Tissue engineering is a promising strategy with great therapeutic potential intended to assist the n...
Polypyrrole (PPy) is a biocompatible polymer with good conductivity. Studies combining PPy with elec...
The application of tissue engineering has been extensively explored for decades to improve biologica...
Peripheral nerve injuries (PNI) causing gaps larger than a few millimeters require the interposition...
Tissue engineering scaffolds with nanofibrous structures provide positive support for cell prolifera...
Electrospun fibrous scaffolds capable of providing growth factor delivery and contact guidance have ...
The use of nanofibrous scaffolds for tissue engineering applications is emerging as an important are...
Electrospun nanofibrous scaffolds which can mimic the architecture of the natural extracellular matr...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
Nanotechnology innovations create an exciting focus for research in regenerative medicine. Nanomater...
Tissue engineering techniques using a combination of polymeric scaffolds and cells represent a promi...
Tissue engineering techniques using a combination of polymeric scaffolds and cells represent a promi...
Peripheral nerve injury is a serious clinical problem to be solved. There has been no breakthrough s...
Interactions between Schwann cells (SCs) and scaffolds are important for tissue development during n...
Peripheral nerves have demonstrated the ability to bridge gaps of up to 6 mm. Peripheral Nerve Syste...
Tissue engineering is a promising strategy with great therapeutic potential intended to assist the n...
Polypyrrole (PPy) is a biocompatible polymer with good conductivity. Studies combining PPy with elec...
The application of tissue engineering has been extensively explored for decades to improve biologica...
Peripheral nerve injuries (PNI) causing gaps larger than a few millimeters require the interposition...
Tissue engineering scaffolds with nanofibrous structures provide positive support for cell prolifera...
Electrospun fibrous scaffolds capable of providing growth factor delivery and contact guidance have ...
The use of nanofibrous scaffolds for tissue engineering applications is emerging as an important are...
Electrospun nanofibrous scaffolds which can mimic the architecture of the natural extracellular matr...
Electrospun techniques are promising and flexible technologies to fabricate ultrafine fiber/nanofibe...
Nanotechnology innovations create an exciting focus for research in regenerative medicine. Nanomater...