Three-dimensional (3D) organotypic culture models based on human cells may reduce the use of complex and costly animal models, while gaining clinical relevance. This study aimed at developing a 3D osteoblastic-osteoclastic-endothelial cell co-culture system, as an in vitro model to mimic the process of bone turnover. Osteoprogenitor and endothelial lineage cells were isolated from the stromal vascular fraction (SVF) of human adipose tissue, whereas CD14+ osteoclast progenitors were derived from human peripheral blood. Cells were co-cultured within 3D porous ceramic scaffolds using a perfusion-based bioreactor device, in the presence of typical osteoclastogenic factors. After 3 weeks, the scaffolds contained cells with endothelial (2.0 ±0.3)...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Bone is a highly vascularized tissue, in which vascularization and mineralization are concurrent pro...
In this article, we first developed a new medium to culture together primary human osteoblastic, ost...
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...
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...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Bone is a highly vascularized tissue, in which vascularization and mineralization are concurrent pro...
In this article, we first developed a new medium to culture together primary human osteoblastic, ost...
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...
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...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
International audienceThere is increasing interest in developing new in vitro tissue models using ty...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
Bone is a highly vascularized tissue, in which vascularization and mineralization are concurrent pro...
In this article, we first developed a new medium to culture together primary human osteoblastic, ost...