In vitro evaluation of bone graft materials is generally performed by analyzing the interaction with osteoblasts or osteoblast precursors. In vitro bone models comprising different cell species can give specific first information on the performance of those materials. In the present study, a 3D co-culture model was established comprising primary human osteoblasts, osteoclasts and osteocytes. Osteocytes were differentiated from osteoblasts embedded in collagen gels and were cultivated with osteoblast and osteoclasts seeded in patterns on a porous membrane. This experimental setup allowed paracrine signaling as well as separation of the different cell types for final analysis. After 7 days of co-culture, the three cell species showed their ty...
New biomaterials and scaffolds for bone tissue engineering (BTE) applications require to be tested i...
Bone hybrids made of bioceramics seeded with mesenchymal or osteoblastic cells are very promising al...
Bone tissue undergoes constant remodeling and healing when fracture happens, in order to ensure its ...
Background: Osteocytes are the key regulator cells in bone tissue, affecting activity of both osteob...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
In this article, we first developed a new medium to culture together primary human osteoblastic, ost...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
International audienceAbstract Introduction: Investigations on primary osteocytes, which compose ove...
Studies on primary osteocytes, which compose > 90-95% of bone cells, embedded throughout the mineral...
New biomaterials and scaffolds for bone tissue engineering (BTE) applications require to be tested i...
Bone hybrids made of bioceramics seeded with mesenchymal or osteoblastic cells are very promising al...
Bone tissue undergoes constant remodeling and healing when fracture happens, in order to ensure its ...
Background: Osteocytes are the key regulator cells in bone tissue, affecting activity of both osteob...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
In this article, we first developed a new medium to culture together primary human osteoblastic, ost...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
International audienceAbstract Introduction: Investigations on primary osteocytes, which compose ove...
Studies on primary osteocytes, which compose > 90-95% of bone cells, embedded throughout the mineral...
New biomaterials and scaffolds for bone tissue engineering (BTE) applications require to be tested i...
Bone hybrids made of bioceramics seeded with mesenchymal or osteoblastic cells are very promising al...
Bone tissue undergoes constant remodeling and healing when fracture happens, in order to ensure its ...