In bone tissue regeneration, the use of biomineralized scaffolds to create the 3D porous structure needed for well-fitting with defect size and appropriate cell interactions, is a promising alternative to autologous and heterologous bone grafts. Biomineralized polyurethane (PU) foams are here investigated as scaffold for bone tissue regeneration. Biomineralization of the foams was carried out by activation of PU surface by a two steps procedure performed for different times (1 to 4 weeks). Scaffolds were investigated for morphological, chemico-physical and mechanical properties, as well as for in vitro interaction with rat Bone Marrow Mesenchymal Stem Cells (BMSCs). Untreated and biomineralized PU samples showed a homogenous morphology and ...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
Plastic surgeons have long searched for the ideal materials to use in craniomaxillofacial reconstruc...
Polyurethane (PU) is a promising polymer to support bone-matrix producing cells due to its durabilit...
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...
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...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
Plastic surgeons have long searched for the ideal materials to use in craniomaxillofacial reconstruc...
Polyurethane (PU) is a promising polymer to support bone-matrix producing cells due to its durabilit...
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...
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...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
Biomaterial scaffolds meant to function as supporting structures to osteogenic cells play a pivotal ...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
In bone tissue reconstruction, the use of engineered constructs created by mesenchymal stem cells (M...
Plastic surgeons have long searched for the ideal materials to use in craniomaxillofacial reconstruc...
Polyurethane (PU) is a promising polymer to support bone-matrix producing cells due to its durabilit...