Mechanically stimulating cell-seeded scaffolds by flow-perfusion is one approach utilized for developing clinically applicable bone graft substitutes. A key challenge is determining the magnitude of stimuli to apply that enhances cell differentiation but minimizes cell detachment from the scaffold. In this study, we employed a combined computational modeling and experimental approach to examine how the scaffold mean pore size influences cell attachment morphology and subsequently impacts upon cell deformation and detachment when subjected to fluid-flow. Cell detachment from osteoblast-seeded collagen-GAG scaffolds was evaluated experimentally across a range of scaffold pore sizes subjected to different flow rates and exposure times in a per...
Tissue engineering is an emerging field with the aim to produce artificial organs and tissues for tr...
Introduction: Although bone tissue engineering and regenerative medicine are promising strategies fo...
In natural tissues, the extracellular matrix composition, cell density and physiological properties ...
Mechanically stimulating cell-seeded scaffolds by flow-perfusion is one approach utilized for develo...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Tissue engineering strategies seek to regenerate cartilage tissue in vitro using a combination of ce...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
The increasing demand for bone grafts, combined with their limited availability and potential risks,...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
Mechanical stimulation, such as fluid-induced wall shear stress (WSS), is known that can influence t...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
Tissue engineering is an emerging field with the aim to produce artificial organs and tissues for tr...
Introduction: Although bone tissue engineering and regenerative medicine are promising strategies fo...
In natural tissues, the extracellular matrix composition, cell density and physiological properties ...
Mechanically stimulating cell-seeded scaffolds by flow-perfusion is one approach utilized for develo...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
Bone tissue engineering (BTE) experiments in vitro have shown that fluid-induced wall shear stress (...
Tissue engineering strategies seek to regenerate cartilage tissue in vitro using a combination of ce...
In bone tissue engineering experiments, fluid-induced shear stress is able to stimulate cells to pro...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
The increasing demand for bone grafts, combined with their limited availability and potential risks,...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
Mechanical stimulation, such as fluid-induced wall shear stress (WSS), is known that can influence t...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
Tissue engineering is an emerging field with the aim to produce artificial organs and tissues for tr...
Introduction: Although bone tissue engineering and regenerative medicine are promising strategies fo...
In natural tissues, the extracellular matrix composition, cell density and physiological properties ...