In bone tissue engineering research, bioreactors designed for replicating the main features of the complex native environment represent powerful investigation tools. Moreover, when equipped with automation, their use allows reducing user intervention and dependence, increasing reproducibility and the overall quality of the culture process. In this study, an automated uni-/bi-directional perfusion bioreactor combinable with pulsed electromagnetic field (PEMF) stimulation for culturing 3D bone tissue models is proposed. A user-friendly control unit automates the perfusion, minimizing the user dependency. Computational fluid dynamics simulations supported the culture chamber design and allowed the estimation of the shear stress values within t...
This works reports the development and preliminary assessment of a new bioreactor for culturing larg...
International audienceMost of our knowledge of bone cell physiology is derived from experiments carr...
International audienceAn engineered three dimensional (3D) in vitro cell culture system was designed...
In bone tissue engineering research, bioreactors designed for replicating the main features of the c...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
Tissue engineering strategies that combine porous biomaterial scaffolds with cells capable of osteog...
Tissue engineering (by culturing cells on appropriate scaffolds, and using bioreactors to drive the ...
Dynamic culture protocols have recently emerged as part of (bone) tissue engineering strategies due ...
Pulsed electromagnetic field (PEMF) is known for its bone healing ability in non-union fractures and...
Biomaterials development for bone repair is currently hindered by the lack of physiologically releva...
The fatal determination of bone marrow mesenchymal stem/stromal cells (BMSC) is closely associated w...
Tissue engineering and regenerative medicine (TERM) strategies for generation of new bone tissue inc...
The aim of this study was to evaluate a semi-automated perfusion bioreactor system for the productio...
Dynamic-based systems are bio-designed in order to mimic the micro-environments of the bone tissue. ...
The availability of engineered biological tissues holds great potential for both clinical applicatio...
This works reports the development and preliminary assessment of a new bioreactor for culturing larg...
International audienceMost of our knowledge of bone cell physiology is derived from experiments carr...
International audienceAn engineered three dimensional (3D) in vitro cell culture system was designed...
In bone tissue engineering research, bioreactors designed for replicating the main features of the c...
Various perfusion bioreactor systems have been designed to improve cell culture with three-dimension...
Tissue engineering strategies that combine porous biomaterial scaffolds with cells capable of osteog...
Tissue engineering (by culturing cells on appropriate scaffolds, and using bioreactors to drive the ...
Dynamic culture protocols have recently emerged as part of (bone) tissue engineering strategies due ...
Pulsed electromagnetic field (PEMF) is known for its bone healing ability in non-union fractures and...
Biomaterials development for bone repair is currently hindered by the lack of physiologically releva...
The fatal determination of bone marrow mesenchymal stem/stromal cells (BMSC) is closely associated w...
Tissue engineering and regenerative medicine (TERM) strategies for generation of new bone tissue inc...
The aim of this study was to evaluate a semi-automated perfusion bioreactor system for the productio...
Dynamic-based systems are bio-designed in order to mimic the micro-environments of the bone tissue. ...
The availability of engineered biological tissues holds great potential for both clinical applicatio...
This works reports the development and preliminary assessment of a new bioreactor for culturing larg...
International audienceMost of our knowledge of bone cell physiology is derived from experiments carr...
International audienceAn engineered three dimensional (3D) in vitro cell culture system was designed...