The development of osteoinductive calcium phosphate- (CaP) based biomaterials has, and continues to be, a major focus in the field of bone tissue engineering. However, limited insight into the spatiotemporal activation of signalling pathways has hampered the optimisation of in vivo bone formation and subsequent clinical translation. To gain further knowledge regarding the early molecular events governing bone tissue formation, we combined human periosteum derived progenitor cells with three types of clinically used CaP-scaffolds, to obtain constructs with a distinct range of bone forming capacity in vivo. Protein phosphorylation together with gene expression for key ligands and target genes were investigated 24 hours after cell seeding in v...
In this study, we investigated a clinically relevant model of in vivo ectopic bone formation utilizi...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...
The development of osteoinductive calcium phosphate- (CaP) based biomaterials has, and continues to ...
The development of osteoinductive calcium phosphate- (CaP) based biomaterials has, and continues to ...
Introduction: A strategy for bone tissue engineering is to combine osteochondroprogenitor cells, ost...
Cell based combination products with growth factors on optimal carriers represent a promising tissue...
peer reviewedWhen combining osteogenic progenitor cells such as human periosteum derived cells (hPDC...
When combining osteogenic progenitor cells such as human periosteum derived cells (hPDCs) with osteo...
peer reviewedCell based combination products with growth factors on optimal carriers represent a pro...
When combining osteogenic progenitor cells such as human periosteum derived cells (hPDCs) with osteo...
Cell based combination products with growth factors on optimal carriers represent a promising tissue...
Stem cell-based strategies for bone regeneration, which use calcium phosphate (CaP)-based biomateria...
Over 18 % of annual fractures of the tibia lead to non-unions, commonly caused by the critical size ...
Stem cell-based strategies for bone regeneration, which use calcium phosphate (CaP)-based biomateria...
In this study, we investigated a clinically relevant model of in vivo ectopic bone formation utilizi...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...
The development of osteoinductive calcium phosphate- (CaP) based biomaterials has, and continues to ...
The development of osteoinductive calcium phosphate- (CaP) based biomaterials has, and continues to ...
Introduction: A strategy for bone tissue engineering is to combine osteochondroprogenitor cells, ost...
Cell based combination products with growth factors on optimal carriers represent a promising tissue...
peer reviewedWhen combining osteogenic progenitor cells such as human periosteum derived cells (hPDC...
When combining osteogenic progenitor cells such as human periosteum derived cells (hPDCs) with osteo...
peer reviewedCell based combination products with growth factors on optimal carriers represent a pro...
When combining osteogenic progenitor cells such as human periosteum derived cells (hPDCs) with osteo...
Cell based combination products with growth factors on optimal carriers represent a promising tissue...
Stem cell-based strategies for bone regeneration, which use calcium phosphate (CaP)-based biomateria...
Over 18 % of annual fractures of the tibia lead to non-unions, commonly caused by the critical size ...
Stem cell-based strategies for bone regeneration, which use calcium phosphate (CaP)-based biomateria...
In this study, we investigated a clinically relevant model of in vivo ectopic bone formation utilizi...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...
Current knowledge suggests that the periosteum, a fibrous tissue which covers the surface of all bon...