Perfusion bioreactors regulate flow conditions in order to provide cells with oxygen, nutrients and flow-associated mechanical stimuli. Locally, these flow conditions can vary depending on the scaffold geometry, cellular confluency and amount of extra cellular matrix deposition. In this study, a novel application of the immersed boundary method was introduced in order to represent a detailed deformable cell attached to a 3D scaffold inside a perfusion bioreactor and exposed to microscopic flow. The immersed boundary model permits the prediction of mechanical effects of the local flow conditions on the cell. Incorporating stiffness values measured with atomic force microscopy and micro-flow boundary conditions obtained from computational flu...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
Mechanically stimulating cell-seeded scaffolds by flow-perfusion is one approach utilized for develo...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
Mechanical stimulation, such as fluid-induced wall shear stress (WSS), is known that can influence t...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Mechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation, matrix ...
Perfusion bioreactors have been proved to be an impartible part of vascular tissue engineering due t...
International audienceBy favoring cell proliferation and differentiation, perfusion bioreactors prov...
Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimul...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
We present a combined macro-scale/micro-scale computational approach to quantify oxygen transport an...
Tissue engineering is an emerging field with the aim to produce artificial organs and tissues for tr...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
Mechanically stimulating cell-seeded scaffolds by flow-perfusion is one approach utilized for develo...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...
Mechanical stimulation, such as fluid-induced wall shear stress (WSS), is known that can influence t...
Bioreactors allowing culture medium perfusion overcome diffusion limitations associated with static ...
Mechanical stimulation can regulate cellular behavior, e.g., differentiation, proliferation, matrix ...
Perfusion bioreactors have been proved to be an impartible part of vascular tissue engineering due t...
International audienceBy favoring cell proliferation and differentiation, perfusion bioreactors prov...
Bone tissue engineering strategies use flow through perfusion bioreactors to apply mechanical stimul...
Tissue-engineered bone shows promise in meeting the huge demand for bone grafts caused by up to 4 mi...
Three-dimensional perfusion bioreactors have been shown to enhance cell viability and function throu...
We present a combined macro-scale/micro-scale computational approach to quantify oxygen transport an...
Tissue engineering is an emerging field with the aim to produce artificial organs and tissues for tr...
The three dimensional (3D) cultivation of stem cells in dynamic bioreactor systems is essential in t...
International audiencePart of clinically applicable bone graft substitutes are developed by using me...
The perfusion of flow during cell culture induces cell proliferation and enhances cellular activity....
Mechanically stimulating cell-seeded scaffolds by flow-perfusion is one approach utilized for develo...
A three phase model for the growth of a tissue construct within a perfusion bioreactor is examined. ...