Nanofibers are well known as a beneficial type of structure for tissue engineering. As a result of the high acquisition cost of the natural polymers and their environmentally problematic treatment (toxic dissolution agents), artificial polymers seem to be the better choice for medical use. In the present study, polycaprolactone nano-sized fibrous structures were prepared by the electrospinning method. The impact of material morphology (random or parallelly oriented fibers versus continuous layer) and the presence of a fraction of hydroxyapatite nanoparticles on cell proliferation was tested. In addition, the effect of improving the material wettability by a low temperature argon discharge plasma treatment was evaluated, too. We have shown t...
Electrospinning is useful for fabricating nanofibrous structure with different composition and morph...
Due to their good mechanical stability compared to gelatin, collagen or polyethylene glycol nanofibe...
Biodegradable nanofibers are extensively employed in different areas of biology and medicine, partic...
BACKGROUND: The objectives of this study were to design polycaprolactone nanofibers with a radial pa...
Hydroxyapatite has long been recognized for its biocompatible properties. Because a modified form o...
INTRODUCTION: Poly-ε-caprolactone (PCL) is an interesting polymer for tissue engineering purposes du...
Stem cell and tissue engineering offer us with a unique opportunity to research and develop new ther...
In this research, keratin (Kr)/ poly caprolactone (PCL)/ hydroxyapatite (HA) scaffold was made by el...
This study describes the production, testing and characterization of biodegradable scaffolds for bon...
Biodegradable polymers of natural origin are ideal for the development of processes in tissue engine...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...
Biodegradable polymers of natural origin are ideal for the development of processes in tissue engin...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Objective(s): Electrospun nanofibrous mats of poly(lactic acid) (PLA) and nanohydroxyapatite (nano-H...
In this study, polycaprolactone (PCL) nanofibrous mats (empty set: 144.2 +/- 3.4 nm) were fabricated...
Electrospinning is useful for fabricating nanofibrous structure with different composition and morph...
Due to their good mechanical stability compared to gelatin, collagen or polyethylene glycol nanofibe...
Biodegradable nanofibers are extensively employed in different areas of biology and medicine, partic...
BACKGROUND: The objectives of this study were to design polycaprolactone nanofibers with a radial pa...
Hydroxyapatite has long been recognized for its biocompatible properties. Because a modified form o...
INTRODUCTION: Poly-ε-caprolactone (PCL) is an interesting polymer for tissue engineering purposes du...
Stem cell and tissue engineering offer us with a unique opportunity to research and develop new ther...
In this research, keratin (Kr)/ poly caprolactone (PCL)/ hydroxyapatite (HA) scaffold was made by el...
This study describes the production, testing and characterization of biodegradable scaffolds for bon...
Biodegradable polymers of natural origin are ideal for the development of processes in tissue engine...
The interest in biodegradable polymer nanofibres with tissue cell regeneration potential has increas...
Biodegradable polymers of natural origin are ideal for the development of processes in tissue engin...
Tissue engineering fibrous scaffolds serve as three-dimensional (3D) environmental framework by mimi...
Objective(s): Electrospun nanofibrous mats of poly(lactic acid) (PLA) and nanohydroxyapatite (nano-H...
In this study, polycaprolactone (PCL) nanofibrous mats (empty set: 144.2 +/- 3.4 nm) were fabricated...
Electrospinning is useful for fabricating nanofibrous structure with different composition and morph...
Due to their good mechanical stability compared to gelatin, collagen or polyethylene glycol nanofibe...
Biodegradable nanofibers are extensively employed in different areas of biology and medicine, partic...