This paper provides review updates on the current development of bionanocomposites with polymeric matrices consisting of synthetic biodegradable aliphatic polyesters reinforced with nanohydroxyaptite (nHA) and/or graphene oxide (GO) nanofillers for bone tissue engineering applications. Biodegradable aliphatic polyesters include poly(lactic acid) (PLA), polycaprolactone (PCL) and copolymers of PLA-PGA (PLGA). Those bionanocomposites have been explored for making 3D porous scaffolds for the repair of bone defects since nHA and GO enhance their bioactivity and biocompatibility by promoting biomineralization, bone cell adhesion, proliferation and differentiation, thus facilitating new bone tissue formation upon implantation. The incorporation o...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Abstract Biodegradable porous biomaterial scaffolds play a critical role in bone regeneration. In th...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
Abstract: Polymer nanocomposite scaffolds of polylactic acid and poly(ε-caprolactone) with chitosan-...
Graphene oxide (GO) and a nanohydroxyapatite rod (nHA) of good biocompatibility were incorporated in...
Fabrication of reinforced scaffolds to repair and regenerate defected bone is still a major challeng...
Strategies for bone tissue engineering and regeneration rely on bioactive scaffolds to mimic the nat...
Poly(propylene fumarate) (PPF) is a linear and unsaturated copolyester based on fumaric acid that ha...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
The importance of bone scaffolds has increased many folds in the last few years; however, during bon...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
Several significant advancements in the field of bone regenerative medicine have been made in recent...
Bone tissue engineering is an advanced field for treatment of fractured bones to re-store/regulate b...
grantor: University of TorontoThis thesis presents work on the use of biodegradable, bioco...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Abstract Biodegradable porous biomaterial scaffolds play a critical role in bone regeneration. In th...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
Abstract: Polymer nanocomposite scaffolds of polylactic acid and poly(ε-caprolactone) with chitosan-...
Graphene oxide (GO) and a nanohydroxyapatite rod (nHA) of good biocompatibility were incorporated in...
Fabrication of reinforced scaffolds to repair and regenerate defected bone is still a major challeng...
Strategies for bone tissue engineering and regeneration rely on bioactive scaffolds to mimic the nat...
Poly(propylene fumarate) (PPF) is a linear and unsaturated copolyester based on fumaric acid that ha...
Additive manufacturing is a rising field in bone tissue engineering. Additive fabrication offers rep...
The importance of bone scaffolds has increased many folds in the last few years; however, during bon...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
Several significant advancements in the field of bone regenerative medicine have been made in recent...
Bone tissue engineering is an advanced field for treatment of fractured bones to re-store/regulate b...
grantor: University of TorontoThis thesis presents work on the use of biodegradable, bioco...
Studies have reported that the incorporation of graphene oxide (GO) and hydroxyapatite (HA) into bio...
Abstract Biodegradable porous biomaterial scaffolds play a critical role in bone regeneration. In th...
Hard tissues, such as bone and teeth, are natural composites of collagen nanofibers that are reinfor...