Osteocytes, known to act as the main regulators of bone homeostasis, have become a major focus in the field of bone research. Bioactive ceramics have been widely used for bone regeneration. However, there are few studies about the interaction of osteocytes with bioceramics. The effects of osteocytes on the in vitro and in vivo osteogenesis of bioceramics are also unclear. The aim of this study was to investigate the role of osteocytes on the b-tricalcium phosphate (b-TCP) stimulated osteogenesis. It was found that osteocytes responded to the b-TCP stimulation, leading to the release of Wnt (wingless-related MMTV integration site), which enhanced osteogenic differentiation of bone marrow stromal cells via Wnt signaling pathway. Receptor acti...
Mesenchymal stem cells (MSCs) within their native environment of the stem cell niche in bone receive...
In biomaterial engineering, the surface of an implant can influence cell differentiation, adhesion a...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
Osteocytes, known to act as the main regulators of bone homeostasis, have become a major focus in th...
Osteocytes, known to act as the main regulators of bone homeostasis, have become a major focus in th...
Calcium phosphate (CaP) based ceramics are used as bone graft substitutes in the treatment of bone d...
Immune reactions play important roles in determining the in vivo fate of bone substitute materials, ...
Bone hybrids made of bioceramics seeded with mesenchymal or osteoblastic cells are very promising al...
Immune reactions play important roles in determining the in vivo fate of bone substitute materials, ...
The aim of this study was to assess the immune modulatory properties of human mesenchymal stromal ce...
New biomaterials are being developed to meet the bone healing needs of patients. When these biomater...
International audienceThe aim of this study was to assess the immune modulatory properties of human ...
Biomaterial implantation triggers inflammatory reactions. Understanding the effect of physicochemica...
The surface topography of synthetic biomaterials is known to play a role in material-driven osteogen...
Biomaterial implantation triggers inflammatory reactions. Understanding the effect of physicochemica...
Mesenchymal stem cells (MSCs) within their native environment of the stem cell niche in bone receive...
In biomaterial engineering, the surface of an implant can influence cell differentiation, adhesion a...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...
Osteocytes, known to act as the main regulators of bone homeostasis, have become a major focus in th...
Osteocytes, known to act as the main regulators of bone homeostasis, have become a major focus in th...
Calcium phosphate (CaP) based ceramics are used as bone graft substitutes in the treatment of bone d...
Immune reactions play important roles in determining the in vivo fate of bone substitute materials, ...
Bone hybrids made of bioceramics seeded with mesenchymal or osteoblastic cells are very promising al...
Immune reactions play important roles in determining the in vivo fate of bone substitute materials, ...
The aim of this study was to assess the immune modulatory properties of human mesenchymal stromal ce...
New biomaterials are being developed to meet the bone healing needs of patients. When these biomater...
International audienceThe aim of this study was to assess the immune modulatory properties of human ...
Biomaterial implantation triggers inflammatory reactions. Understanding the effect of physicochemica...
The surface topography of synthetic biomaterials is known to play a role in material-driven osteogen...
Biomaterial implantation triggers inflammatory reactions. Understanding the effect of physicochemica...
Mesenchymal stem cells (MSCs) within their native environment of the stem cell niche in bone receive...
In biomaterial engineering, the surface of an implant can influence cell differentiation, adhesion a...
A current challenge of synthetic bone graft substitute design is to induce bone formation at a simil...