Natural cartilage remodels both in vivo and in vitro in response to mechanical stresses, hence mechanical stimulation is believed to be a potential tool to modulate extra-cellular matrix synthesis in tissue-engineered cartilage. Fluid-induced shear is known to enhance chondrogenesis in engineered cartilage constructs. The quantification of the hydrodynamic environment is a condition required to study the biochemical response to shear of 3D engineered cell systems. We developed a computational model of culture medium flow through the microstructure of a porous scaffold, during direct-perfused culture. The 3D solid model of the scaffold micro-geometry was reconstructed from 250 micro-computed tomography (micro-CT) images. The results of the f...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimul...
Due to the sensitivity of mammalian cell cultures, understanding the influence of operating conditio...
Natural cartilage remodels both in vivo and in vitro in response to mechanical stresses, hence mecha...
Flow induced shear stress plays an important role in regulating cell growth and distribution in scaf...
Bioreactors allowing direct-perfusion of culture medium through tissue-engineered constructs may ove...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Tissue engineering strategies seek to regenerate cartilage tissue in vitro using a combination of ce...
Mechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation, matrix ...
This work examines the effect of perfusion on human mature articular chondrocytes cultured on synthe...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimul...
Due to the sensitivity of mammalian cell cultures, understanding the influence of operating conditio...
Natural cartilage remodels both in vivo and in vitro in response to mechanical stresses, hence mecha...
Flow induced shear stress plays an important role in regulating cell growth and distribution in scaf...
Bioreactors allowing direct-perfusion of culture medium through tissue-engineered constructs may ove...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Tissue engineering strategies seek to regenerate cartilage tissue in vitro using a combination of ce...
Mechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation, matrix ...
This work examines the effect of perfusion on human mature articular chondrocytes cultured on synthe...
Flow perfusion bioreactors have been extensively investigated as a promising culture method for bone...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
The use of biocompatible and biodegradable porous scaffolds produced via additive manufacturing is o...
The advantages of longitudinal monitoring techniques are getting more attention in various tissue en...
Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimul...
Due to the sensitivity of mammalian cell cultures, understanding the influence of operating conditio...