Bone regeneration represents still a challenge, in particular for calvarium defects. Recently, the development of biomaterials with the addiction of stem cells is giving promising results for the treatment of bone defects. In particular, it was demonstrated that scaffolds enriched with mesenchymal stem cells (MSCs) and/or their derivatives, such as conditioned medium (CM) and extracellular vesicles (EVs), may improve bone regeneration. Moreover, given the deep link between osteogenesis and angiogenesis, a successful approach must also take into consideration the development of vascularization. In this work we evaluated the bone regeneration capacity of a collagen membrane (3D-COL) enriched with human periodontal-ligament stem cells (hPDLSCs...
Abstract Background The role of bone tissue engineering in the field of regenerative medicine has be...
The purpose of this work was to test, in vitro and in vivo, a new tissue-engineered construct consti...
Bone tissue engineering is one of the main branches of regenerative medicine. In this field, the use...
Bone regeneration represents still a challenge, in particular for calvarium defects. Recently, the d...
Bone regeneration represents still a challenge, in particular for calvarium defects. Recently, the d...
Purpose: The combination of oral derived stem cells and 3-D scaffolds is considered advantageous in ...
Bone tissue engineering is based on bone grafting to repair bone defects. Bone graft substitutes can...
Tissue engineering has been shown to offer promising approaches for bone regeneration, mostly based ...
Background: The role of bone tissue engineering in the field of regenerative medicine has been a mai...
Rapid vascularisation of tissue-engineered osteogenic grafts is a major obstacle in the development ...
Rapid vascularisation of tissue-engineered osteogenic grafts is a major obstacle in the development ...
(1) Background: Vascularization remains a critical challenge in bone tissue engineering. The objecti...
Scaffolds associated with mesenchymal stem cell (MSC) derivatives, such as extracellular vesicles (E...
Scaffolds associated with mesenchymal stem cell (MSC) derivatives, such as extracellular vesicles (E...
Abstract Background The role of bone tissue engineering in the field of regenerative medicine has be...
The purpose of this work was to test, in vitro and in vivo, a new tissue-engineered construct consti...
Bone tissue engineering is one of the main branches of regenerative medicine. In this field, the use...
Bone regeneration represents still a challenge, in particular for calvarium defects. Recently, the d...
Bone regeneration represents still a challenge, in particular for calvarium defects. Recently, the d...
Purpose: The combination of oral derived stem cells and 3-D scaffolds is considered advantageous in ...
Bone tissue engineering is based on bone grafting to repair bone defects. Bone graft substitutes can...
Tissue engineering has been shown to offer promising approaches for bone regeneration, mostly based ...
Background: The role of bone tissue engineering in the field of regenerative medicine has been a mai...
Rapid vascularisation of tissue-engineered osteogenic grafts is a major obstacle in the development ...
Rapid vascularisation of tissue-engineered osteogenic grafts is a major obstacle in the development ...
(1) Background: Vascularization remains a critical challenge in bone tissue engineering. The objecti...
Scaffolds associated with mesenchymal stem cell (MSC) derivatives, such as extracellular vesicles (E...
Scaffolds associated with mesenchymal stem cell (MSC) derivatives, such as extracellular vesicles (E...
Abstract Background The role of bone tissue engineering in the field of regenerative medicine has be...
The purpose of this work was to test, in vitro and in vivo, a new tissue-engineered construct consti...
Bone tissue engineering is one of the main branches of regenerative medicine. In this field, the use...