The aim of the present study was to further improve an in vitro 3D osteoblast (OB) – osteoclast (OC) co-culture model of bone by tuning it towards states of formation, resorption, and equilibrium for their future applications in fundamental research, drug development and personalized medicine. This was achieved by varying culture medium composition and monocyte seeding density, the two external parameters that affect cell behavior the most. Monocytes were seeded at two seeding densities onto 3D silk-fibroin constructs pre-mineralized by MSC-derived OBs and were co-cultured in one of three different media (OC stimulating, Neutral and OB stimulating medium) for three weeks. Histology showed mineralized matrix after co-culture and OC markers i...
none6noBone is an extremely dynamic tissue, undergoing continuous remodeling for its whole lifetime,...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Osteoporosis is a disease characterized by a severe loss in bone mineral density, putting individual...
The aim of the present study was to further improve an in vitro 3D osteoblast (OB) – osteoclast (OC)...
Introduction: Changes in resorption and formation cannot be both monitored, localized and quantified...
In vitro tissue engineered bone constructs have been developed, but models which mimic both formatio...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
The bone resorbing osteoclasts are a complex type of cell essential for in vivo bone remodeling. The...
Animal studies are morally problematic, expensive, time consuming and often not accurate or not suit...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
none6noBone is an extremely dynamic tissue, undergoing continuous remodeling for its whole lifetime,...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Osteoporosis is a disease characterized by a severe loss in bone mineral density, putting individual...
The aim of the present study was to further improve an in vitro 3D osteoblast (OB) – osteoclast (OC)...
Introduction: Changes in resorption and formation cannot be both monitored, localized and quantified...
In vitro tissue engineered bone constructs have been developed, but models which mimic both formatio...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
The bone resorbing osteoclasts are a complex type of cell essential for in vivo bone remodeling. The...
Animal studies are morally problematic, expensive, time consuming and often not accurate or not suit...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
Drug research with animal models is expensive, time-consuming and translation to clinical trials is ...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
none6noBone is an extremely dynamic tissue, undergoing continuous remodeling for its whole lifetime,...
Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex...
Osteoporosis is a disease characterized by a severe loss in bone mineral density, putting individual...