Plasma treatment is a method to modify the physicochemical properties of biomaterials, which consequently may affect interactions with cells. Based on the rationale that physical cues on the surface of culture substrates and implants, such as surface roughness, have proven to alter cell behaviour, we used electrospinning to fabricate fibrous three-dimensional scaffolds made of a poly (ethylene oxide terephthalate)/poly (butylene terephthalate) copolymer to mimic the physical microenvironment of extracellular matrix and applied radio-frequency oxygen plasma treatment to create nanoscale roughness. Scanning electron microscopy (SEM) analysis revealed a fibre diameter of 5.49 ± 0.96 µm for as-spun meshes. Atomic force microscopy (AFM) measurem...
The topographical effects from functional materials on stem cell behavior are currently of interest ...
Electrospun polymeric meshes have revolutionized the evolving tissue engineering field for their ext...
The topographical effects from functional materials on stem cell behavior are currently of interest ...
Plasma treatment is a method to modify the physicochemical properties of biomaterials, which consequ...
Plasma treatment is a method to modify the physicochemical properties of biomaterials, which consequ...
Plasma treatment is a method to modify the physicochemical properties of biomaterials, which consequ...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
Scaffolds intended for use in tissue engineering applications often invoke a foreign body response u...
Electrospun nanofibrous scaffolds have been extensively used in several biomedical applications for ...
Electrospun scaffolds provide a promising approach for tissue engineering as they mimic the physical...
Electrically conductive scaffolds are of significant interest in tissue regeneration. However, the c...
peer reviewedPoly(hydroxyalkanoates) (PHAs) with differing material properties, namely, the homopoly...
Electrically conductive scaffolds are of significant interest in tissue regeneration. However, the c...
Electrically conductive scaffolds are of significant interest in tissue regeneration. However, the c...
The topographical effects from functional materials on stem cell behavior are currently of interest ...
Electrospun polymeric meshes have revolutionized the evolving tissue engineering field for their ext...
The topographical effects from functional materials on stem cell behavior are currently of interest ...
Plasma treatment is a method to modify the physicochemical properties of biomaterials, which consequ...
Plasma treatment is a method to modify the physicochemical properties of biomaterials, which consequ...
Plasma treatment is a method to modify the physicochemical properties of biomaterials, which consequ...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
Various types of synthetic polyesters have been developed as biomaterials for tissue engineering. Th...
Scaffolds intended for use in tissue engineering applications often invoke a foreign body response u...
Electrospun nanofibrous scaffolds have been extensively used in several biomedical applications for ...
Electrospun scaffolds provide a promising approach for tissue engineering as they mimic the physical...
Electrically conductive scaffolds are of significant interest in tissue regeneration. However, the c...
peer reviewedPoly(hydroxyalkanoates) (PHAs) with differing material properties, namely, the homopoly...
Electrically conductive scaffolds are of significant interest in tissue regeneration. However, the c...
Electrically conductive scaffolds are of significant interest in tissue regeneration. However, the c...
The topographical effects from functional materials on stem cell behavior are currently of interest ...
Electrospun polymeric meshes have revolutionized the evolving tissue engineering field for their ext...
The topographical effects from functional materials on stem cell behavior are currently of interest ...