Bone regeneration and bone fixation strategies in dentistry utilize scaffolds containing regenerating-competent cells as a replacement of the missing bone portions and gradually replaced by autologous tissues. Mesenchymal stem cells represent an ideal cell population for scaffold-based tissue engineering. Among them, dental pulp stem cells (DPSCs) and periosteal stem cells (PeSCs) have the potential to differentiate into a variety of cell types including osteocytes, suggesting that they can be used with this purpose. However, data on bone regeneration properties of these types of cells in scaffold-based tissue engineering are yet insufficient. In this study, we evaluated temporal dynamic bone regeneration (measured as a percentage of bone v...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Traditional tissue engineering methods involve the combination of cells, growth factors and a scaffo...
Introduction: The osteogenic differentiation of bone marrow-derived mesenchymal stromal cells (BMSCs...
Bone regeneration strategies in dentistry utilize biodegradable scaffolds seeded with stem cells abl...
Massive amounts of cell are needed for creating tissue engineered 3D constructs, which often require...
Bone tissue engineering is an area of regenerative medicine that attempts to repair bone defects. Se...
Three-dimensional-porous scaffolds of bone graft substitutes play a critical role in both cell targe...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Background: Stem cell strategies and autologous bone grafting remain a gold standard for the reconst...
Background: Stem cell strategies and autologous bone grafting remain a gold standard for the reconst...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
10noPeriosteum contains mesenchymal stem cells (Pe-MSCs) that contribute to normal bone growth, heal...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Traditional tissue engineering methods involve the combination of cells, growth factors and a scaffo...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Traditional tissue engineering methods involve the combination of cells, growth factors and a scaffo...
Introduction: The osteogenic differentiation of bone marrow-derived mesenchymal stromal cells (BMSCs...
Bone regeneration strategies in dentistry utilize biodegradable scaffolds seeded with stem cells abl...
Massive amounts of cell are needed for creating tissue engineered 3D constructs, which often require...
Bone tissue engineering is an area of regenerative medicine that attempts to repair bone defects. Se...
Three-dimensional-porous scaffolds of bone graft substitutes play a critical role in both cell targe...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Background: Stem cell strategies and autologous bone grafting remain a gold standard for the reconst...
Background: Stem cell strategies and autologous bone grafting remain a gold standard for the reconst...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
10noPeriosteum contains mesenchymal stem cells (Pe-MSCs) that contribute to normal bone growth, heal...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Traditional tissue engineering methods involve the combination of cells, growth factors and a scaffo...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Traditional tissue engineering methods involve the combination of cells, growth factors and a scaffo...
Introduction: The osteogenic differentiation of bone marrow-derived mesenchymal stromal cells (BMSCs...