Introduction: Composites materials are very essential in many form for the survival of the human life, it may be structural (1) functional or biomaterial (2). The bone and flexible cartilaginous tissues constitute human skeleton, and responsible for support and flexible body movement. Key components of the bones are made up of HAP [Ca10(PO4)6(OH)2] crystallites deposited over collagen. Natural bones possessed a porosity of 50-90%. Four tissues which helps in constant state of remodeling of the bones named, osteoblasts, osteoclasts, osteocytes, and bone lining cells. Micro-crack and other defects can easily be removed by these remodeling processes induced by external factors. However, replacements of these body parts from an implant exhibite...
Nanocomposite structure of the bone can be mimicked by chitosan/hydroxyapatite (CS/HAp) composite sc...
Composite scaffolds of hydroxyapatite (HAp) nanoparticles and bioactive glass (BG) were applied as a...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
Materials that are used for biomedical or clinical applications are known as biomaterials. These ma...
In recent years, scrupulous attention has been given to the preparation of porous hydroxyapatite (HA...
Tissue engineering has shown great promise for creating biological alternatives for implants. In thi...
creating biological alternatives for implants. In this ap-proach, scaffolding plays a pivotal role. ...
The hydroxyapatite [HAp, Ca10(PO4)6(OH)2] has a variety of applications in bone fillers and replacem...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
creating biological alternatives for implants. In this ap-proach, scaffolding plays a pivotal role. ...
Bone defects caused by various factors may cause morphological and functional disorders that can ser...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
Hydroxyapatite ceramics have been recognized as substitute materials for bone and teeth in orthopaed...
Nanocomposite structure of the bone can be mimicked by chitosan/hydroxyapatite (CS/HAp) composite sc...
Composite scaffolds of hydroxyapatite (HAp) nanoparticles and bioactive glass (BG) were applied as a...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
Materials that are used for biomedical or clinical applications are known as biomaterials. These ma...
In recent years, scrupulous attention has been given to the preparation of porous hydroxyapatite (HA...
Tissue engineering has shown great promise for creating biological alternatives for implants. In thi...
creating biological alternatives for implants. In this ap-proach, scaffolding plays a pivotal role. ...
The hydroxyapatite [HAp, Ca10(PO4)6(OH)2] has a variety of applications in bone fillers and replacem...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
creating biological alternatives for implants. In this ap-proach, scaffolding plays a pivotal role. ...
Bone defects caused by various factors may cause morphological and functional disorders that can ser...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...
Hydroxyapatite ceramics have been recognized as substitute materials for bone and teeth in orthopaed...
Nanocomposite structure of the bone can be mimicked by chitosan/hydroxyapatite (CS/HAp) composite sc...
Composite scaffolds of hydroxyapatite (HAp) nanoparticles and bioactive glass (BG) were applied as a...
In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure n...