In vitro tissue engineered bone constructs have been developed, but models which mimic both formation and resorption in parallel are still lacking. To be used as a model for the bone remodeling process, the formation and resorption of mineralised tissue volume over time needs to be visualised, localised and quantified. The goal of this study was to develop a human 3D osteoblast-osteoclast co-culture in which 1) osteoblasts deposit mineralised matrix, 2) monocytes differentiate into resorbing osteoclasts, and 3) the formation and resorption of mineralised matrix could be quantified over time using micro-computed tomography (μCT). Mesenchymal stromal cells were seeded on silk fibroin scaffolds and differentiated towards osteoblasts to create ...
INTRODUCTION: Bone tissue is characterized by permanent reconstruction (remodeling), triggered by os...
Human in vitro bone models can create the possibility for investigation of physiological bone remode...
International audienceThe development of an in vitro model of bone and the optimization of tools for...
In vitro tissue engineered bone constructs have been developed, but models which mimic both formatio...
Introduction: Changes in resorption and formation cannot be both monitored, localized and quantified...
The aim of the present study was to further improve an in vitro 3D osteoblast (OB) – osteoclast (OC)...
Animal studies are morally problematic, expensive, time consuming and often not accurate or not suit...
Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone...
Bone tissue continuously adapts to changes in mechanical load. This process can also result in a mal...
To elucidate processes in the osteoclastic bone resorption, visualise resorption and related acti...
Bone is a dynamic tissue that remodels continuously in response to local mechanical and chemical sti...
The bone tissue engineering community has been striving to develop novel approaches that mimic natur...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
INTRODUCTION: Bone tissue is characterized by permanent reconstruction (remodeling), triggered by os...
Human in vitro bone models can create the possibility for investigation of physiological bone remode...
International audienceThe development of an in vitro model of bone and the optimization of tools for...
In vitro tissue engineered bone constructs have been developed, but models which mimic both formatio...
Introduction: Changes in resorption and formation cannot be both monitored, localized and quantified...
The aim of the present study was to further improve an in vitro 3D osteoblast (OB) – osteoclast (OC)...
Animal studies are morally problematic, expensive, time consuming and often not accurate or not suit...
Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone...
Bone tissue continuously adapts to changes in mechanical load. This process can also result in a mal...
To elucidate processes in the osteoclastic bone resorption, visualise resorption and related acti...
Bone is a dynamic tissue that remodels continuously in response to local mechanical and chemical sti...
The bone tissue engineering community has been striving to develop novel approaches that mimic natur...
Human in vitro bone remodeling models, using osteoclast–osteoblast cocultures, can facilitate the in...
INTRODUCTION: Bone tissue is characterized by permanent reconstruction (remodeling), triggered by os...
Human in vitro bone models can create the possibility for investigation of physiological bone remode...
International audienceThe development of an in vitro model of bone and the optimization of tools for...