Limitations to nutrient transport provide a challenge to the development of 3D tissue-engineered constructs. A heterogeneous distribution of viable cells and functional matrix within the developing tissue is a common consequence. In the present study, a bioreactor was developed to perfuse fluid through cylindrical agarose constructs. The transport and distribution of dextran molecules (FD-4, FD-500, FD-2000) within the agarose was visualized in order to determine the bioreactors effectiveness for transport enhancement. By 24 h, the perfusion bioreactor achieved 529%, 395% and 294% higher concentrations of FD-4, FD-500 and FD-2000, respectively, than those solely due to diffusion. Of particular interest was the effectiveness of the bioreacto...
Osteoarthritis is a severe socio-economical disease,for which a suitable treatment modality does not...
The development of functional and matured microvessels within constructed tissue is a great challeng...
AbstractTissue engineering aims to repair and regenerate damaged tissues by developing biological su...
Background. Bone engineering requires thicker three-dimensional constructs than the maximum thicknes...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
The field of tissue engineering aims to provide solutions for the regeneration of organs and tissues...
International audienceOver the last decade hydrogels, and more recently porous hydrogels, have shown...
The objective of this study was to characterize our designed through-thickness perfusion bioreactor ...
Culturing three-dimensional (3D) tissues with an appropriate microenvironment is a critical and fund...
Perfusion culture holds great potential in tissue engineering as an advanced culture technique. This...
This work examines the effect of perfusion on human mature articular chondrocytes cultured on synthe...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
The authors present a hydrogel/poly-dimethylsiloxane (PDMS) hybrid bioreactor. The bioreactor enable...
A cyclic stretch and perfusion bioreactor was designed to culture large diameter engineered tissue t...
Biofabrication methods such as extrusion-based bioprinting allow the manufacture of cell-laden struc...
Osteoarthritis is a severe socio-economical disease,for which a suitable treatment modality does not...
The development of functional and matured microvessels within constructed tissue is a great challeng...
AbstractTissue engineering aims to repair and regenerate damaged tissues by developing biological su...
Background. Bone engineering requires thicker three-dimensional constructs than the maximum thicknes...
Objective: Three dimensional cell and tissue culture outcomes depend on mechanical forcesin their en...
The field of tissue engineering aims to provide solutions for the regeneration of organs and tissues...
International audienceOver the last decade hydrogels, and more recently porous hydrogels, have shown...
The objective of this study was to characterize our designed through-thickness perfusion bioreactor ...
Culturing three-dimensional (3D) tissues with an appropriate microenvironment is a critical and fund...
Perfusion culture holds great potential in tissue engineering as an advanced culture technique. This...
This work examines the effect of perfusion on human mature articular chondrocytes cultured on synthe...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
The authors present a hydrogel/poly-dimethylsiloxane (PDMS) hybrid bioreactor. The bioreactor enable...
A cyclic stretch and perfusion bioreactor was designed to culture large diameter engineered tissue t...
Biofabrication methods such as extrusion-based bioprinting allow the manufacture of cell-laden struc...
Osteoarthritis is a severe socio-economical disease,for which a suitable treatment modality does not...
The development of functional and matured microvessels within constructed tissue is a great challeng...
AbstractTissue engineering aims to repair and regenerate damaged tissues by developing biological su...