Mimicking the zonal organization of the bone-cartilage interface will aid the production of functional osteochondral grafts for regeneration of skeletal joint defects. This study investigates the potential of the electrospinning technique to build a three-dimensional construct recapitulating the zonal matrix of this interface. Poly(lactic-co-glycolic acid) (PLGA) and PLGA-collagen solutions containing different concentrations of hydroxyapatite nanoparticles (nHAp) were electrospun on a thin layer of phosphate buffer saline solution spread on the collector in order to facilitate membrane detachment and recovery. Incorporation of increasing amounts of nHAp in PLGA solutions did not affect significantly the average diameter of the fibres, whic...
While electrospinning is an effective technology for producing poly(hydroxybutyrate-co-hydroxyvalera...
The human body contains a vast array of soft and hard tissues, each with their own unique set of phy...
Session - Symposium Y: Biomaterials and Tissue Engineering: ICMAT11-A-3663Bone tissue engineering re...
Articular cartilage (AC) morbidity represents a substantial burden to global and public health, and ...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
An ideal engineered scaffold should support the regeneration of natural extracellular matrix; for bo...
Electrospinning is a simple and universal way to produce fibres from a variety of materials having d...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
Tissue engineering (TE) is envisaged to play a vital role in improving the quality of life by restor...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
Collagen type II is the most abundant component of articular cartilage extracellular matrix. It has ...
Bone tissue engineering is an interdisciplinary field where the principles of engineering are applie...
Electrospinning technique can be used to produce the three-dimensional nanofibrous scaffold similar ...
While electrospinning is an effective technology for producing poly(hydroxybutyrate-co-hydroxyvalera...
The human body contains a vast array of soft and hard tissues, each with their own unique set of phy...
Session - Symposium Y: Biomaterials and Tissue Engineering: ICMAT11-A-3663Bone tissue engineering re...
Articular cartilage (AC) morbidity represents a substantial burden to global and public health, and ...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
An ideal engineered scaffold should support the regeneration of natural extracellular matrix; for bo...
Electrospinning is a simple and universal way to produce fibres from a variety of materials having d...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
Tissue engineering (TE) is envisaged to play a vital role in improving the quality of life by restor...
While electrospinning had seen intermittent use in the textile industry from the early twentieth cen...
Collagen type II is the most abundant component of articular cartilage extracellular matrix. It has ...
Bone tissue engineering is an interdisciplinary field where the principles of engineering are applie...
Electrospinning technique can be used to produce the three-dimensional nanofibrous scaffold similar ...
While electrospinning is an effective technology for producing poly(hydroxybutyrate-co-hydroxyvalera...
The human body contains a vast array of soft and hard tissues, each with their own unique set of phy...
Session - Symposium Y: Biomaterials and Tissue Engineering: ICMAT11-A-3663Bone tissue engineering re...