PURPOSE OF REVIEW: Novel therapies for damaged and diseased bone are being developed in a preclinical testing process consisting of in vitro cell experiments followed by in vivo animal studies. The in vitro results are often not representative of the results observed in vivo. This could be caused by the complexity of the natural bone environment that is missing in vitro. Ex vivo bone explant cultures provide a model in which cells are preserved in their native three-dimensional environment. Herein, it is aimed to review the current status of bone explant culture models in relation to their potential in complementing the preclinical evaluation process with specific attention paid to the incorporation of mechanical loading within ex vivo cult...
Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone...
To understand in situ behavior of osteocytes, we characterized a model of osteocytes in their native...
Traditionally, bone tissue engineering has been used for creating implants for bone regeneration, bu...
PURPOSE OF REVIEW: Novel therapies for damaged and diseased bone are being developed in a preclinica...
Ex vivo explant culture models are powerful tools in bone research. They allow investigation of bone...
Bone is a complex tissue with a variety of functions, such as providing mechanical stability for loc...
The integrity of the skeleton is maintained by the coordinated and balanced activities of the bone c...
Preclinical studies play an indispensable role in exploring the biological regulation of the musculo...
Limitations in current model systems for researching bone repair have hampered the development of al...
PURPOSE OF REVIEW: One aim in bone tissue engineering is to develop human cell-based, 3D in vitro bo...
The goal of this project was to validate a novel, mechanically loaded culture system, for the mainte...
Background: There are insufficient in vitro bone models that accommodate long-term culture of osteob...
Bone tissue continuously adapts to changes in mechanical load. This process can also result in a mal...
Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone...
To understand in situ behavior of osteocytes, we characterized a model of osteocytes in their native...
Traditionally, bone tissue engineering has been used for creating implants for bone regeneration, bu...
PURPOSE OF REVIEW: Novel therapies for damaged and diseased bone are being developed in a preclinica...
Ex vivo explant culture models are powerful tools in bone research. They allow investigation of bone...
Bone is a complex tissue with a variety of functions, such as providing mechanical stability for loc...
The integrity of the skeleton is maintained by the coordinated and balanced activities of the bone c...
Preclinical studies play an indispensable role in exploring the biological regulation of the musculo...
Limitations in current model systems for researching bone repair have hampered the development of al...
PURPOSE OF REVIEW: One aim in bone tissue engineering is to develop human cell-based, 3D in vitro bo...
The goal of this project was to validate a novel, mechanically loaded culture system, for the mainte...
Background: There are insufficient in vitro bone models that accommodate long-term culture of osteob...
Bone tissue continuously adapts to changes in mechanical load. This process can also result in a mal...
Disruption of bone remodelling by diseases such as osteoporosis results in an imbalance between bone...
To understand in situ behavior of osteocytes, we characterized a model of osteocytes in their native...
Traditionally, bone tissue engineering has been used for creating implants for bone regeneration, bu...