During the last decades, different materials of both natural and synthetic origin have been developed with the aim of inducing and controlling osteogenic differentiation of mesenchymal stem cells (MSCs). In order for that to happen, it is necessary that the material to be implanted obey a series of requirements, namely: osteoconduction, biocompatibility, and biodegradability. Additionally, they must be low-priced, easy to produce, shape, and store. Hydroxyapatite (HA) is a well known ceramic with a composition similar to the mineral component of bone and is highly biocompatible and easy to obtain and/or process. On the other hand, collagen is the main structural protein present in the human body and bone. In this study, a polymer replicatio...
AbstractAugmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of...
Scaffold design is a key factor in the clinical success of bone tissue engineering grafts. To date, ...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
Porous three-dimensional hydroxyapatite (HA) scaffolds were prepared using bovine cortical bone deri...
For successful bone tissue engineering, a scaffold needs to be osteoconductive, porous, and biodegra...
Scaffold design is a key factor in the clinical success of bone tissue engineering grafts. To date, ...
There is a need in tissue-engineering for 3D scaffolds that mimic the natural extracellular matrix o...
Calcium and phosphate-based ceramics are reported to have osteoinductive properties. In this study, ...
Scaffold design is a key factor in the clinical success of bone tissue engineering grafts. To date, ...
There is a need in tissue-engineering for 3D scaffolds that mimic the natural extracellular matrix o...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
The use of various types of calcium phosphate has been reported in the preparation of repairing mate...
AbstractAugmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of...
Scaffold design is a key factor in the clinical success of bone tissue engineering grafts. To date, ...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...
Porous three-dimensional hydroxyapatite (HA) scaffolds were prepared using bovine cortical bone deri...
For successful bone tissue engineering, a scaffold needs to be osteoconductive, porous, and biodegra...
Scaffold design is a key factor in the clinical success of bone tissue engineering grafts. To date, ...
There is a need in tissue-engineering for 3D scaffolds that mimic the natural extracellular matrix o...
Calcium and phosphate-based ceramics are reported to have osteoinductive properties. In this study, ...
Scaffold design is a key factor in the clinical success of bone tissue engineering grafts. To date, ...
There is a need in tissue-engineering for 3D scaffolds that mimic the natural extracellular matrix o...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
Augmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of thousan...
The use of various types of calcium phosphate has been reported in the preparation of repairing mate...
AbstractAugmentation of regenerative osteogenesis represents a premier clinical need, as hundreds of...
Scaffold design is a key factor in the clinical success of bone tissue engineering grafts. To date, ...
The ability to control the architecture and strength of a bone tissue engineering scaffold is critic...