Our aim was to test cell and trabecular responses to mechanical loading in vitro in a tissue bone explant culture model. We used a new three-dimensional culture model, the ZetOS system, which provides the ability to exert cyclic compression on cancellous bone cylinders (bovine sternum) cultured in forced flow circumfusion chambers, and allows to assess mechanical parameters of the cultivated samples. We evaluated bone cellular parameters through osteocyte viability test, gene and protein expression, and histomorphometric bone formation rate, in nonloaded versus loaded samples. The microarchitecture of bone cores was appraised by in vivo micro-CT imaging. After 3 weeks, the samples receiving daily cyclic compression exhibited increased osteo...
As new biomaterials are developed, the need grows for new technological tools in basic research, and...
Cells respond to physiological mechanical stresses especially during early fetal development. Adopti...
Progress in bone scaffold development relies on cost-intensive and hardly scalable animal studies. I...
Our aim was to test cell and trabecular responses to mechanical loading in vitro in a tissue bone ex...
Osteocytes plays an important role in controlling and determining the function of the other cell typ...
Much interest has been generated in investigating what effect mechanical stimuli have on bone and bo...
This paper introduces the culture preparation of ovine, bovine and human cancellous bone cores to be...
Aims: The response of bone in vivo towards mechanical loading is widely reported1. However, mechano...
Application of dynamic mechanical loads on bone and bone explants has been reported to enhance osteo...
An engineered three dimensional (3D) in vitro cell culture system was designed with the goal of indu...
The role of mechanical forces in regulation of skeletal multi-potent cell differentiation, and conse...
Ex vivo explant culture models are powerful tools in bone research. They allow investigation of bone...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
Mechanical loading has been shown to influence various osteogenic responses of bone-derived cells an...
As new biomaterials are developed, the need grows for new technological tools in basic research, and...
Cells respond to physiological mechanical stresses especially during early fetal development. Adopti...
Progress in bone scaffold development relies on cost-intensive and hardly scalable animal studies. I...
Our aim was to test cell and trabecular responses to mechanical loading in vitro in a tissue bone ex...
Osteocytes plays an important role in controlling and determining the function of the other cell typ...
Much interest has been generated in investigating what effect mechanical stimuli have on bone and bo...
This paper introduces the culture preparation of ovine, bovine and human cancellous bone cores to be...
Aims: The response of bone in vivo towards mechanical loading is widely reported1. However, mechano...
Application of dynamic mechanical loads on bone and bone explants has been reported to enhance osteo...
An engineered three dimensional (3D) in vitro cell culture system was designed with the goal of indu...
The role of mechanical forces in regulation of skeletal multi-potent cell differentiation, and conse...
Ex vivo explant culture models are powerful tools in bone research. They allow investigation of bone...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
In bone tissue engineering, the design of in vitro models able to recreate both the chemical composi...
Mechanical loading has been shown to influence various osteogenic responses of bone-derived cells an...
As new biomaterials are developed, the need grows for new technological tools in basic research, and...
Cells respond to physiological mechanical stresses especially during early fetal development. Adopti...
Progress in bone scaffold development relies on cost-intensive and hardly scalable animal studies. I...