mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provide an unlimited supply of cells that can be differentiated into chondrocytes. So far, chondrogenic differentiation of both mouse and human ES cells has only been demonstrated in two-dimensional cultures, in pellet cultures, in a hydrogel, or on thin biomaterials. The next challenge will be to form cartilage on a load-bearing, clinically relevant–sized scaffold in vitro and in vivo, to regenerate defects in patients suffering from articular cartilage disorders. For a successful implant, cells have to be seeded efficiently and homogenously throughout the scaffold. Parameters investigated were the scaffold architecture, seeding method, and cellul...
Articular cartilage functions as a shock absorber and facilitates the free movement of joints. Curre...
By means of appropriate cell type and scaffold, tissue-engineering approaches aim to construct graft...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Functional articular cartilage tissue repair continues to be an unsolved problem for orthopedic surg...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Cartilage tissue can be engineered by starting from a diversity of cell sources, including stem-cell...
Regeneration of skeletal tissues represents an increasingly promising area of biological repair with...
Cell therapy combined with biomaterial scaffolds is used to treat cartilage defects. We hypothesized...
Various cell types have been investigated as candidate cell sources for cartilage and bone tissue en...
Cartilage tissue can be engineered by starting from a diversity of cell sources, including stem-cell...
In this study a three step culture system, 2D-3D sequential culture in vitro and further implantatio...
Cartilage defects have limited capacity for repair and are often replaced by fibrocartilage with inf...
International audienceInjuries to articular cartilage are one of the most challenging issues of musc...
Articular cartilage functions as a shock absorber and facilitates the free movement of joints. Curre...
By means of appropriate cell type and scaffold, tissue-engineering approaches aim to construct graft...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Functional articular cartilage tissue repair continues to be an unsolved problem for orthopedic surg...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Cartilage tissue can be engineered by starting from a diversity of cell sources, including stem-cell...
Regeneration of skeletal tissues represents an increasingly promising area of biological repair with...
Cell therapy combined with biomaterial scaffolds is used to treat cartilage defects. We hypothesized...
Various cell types have been investigated as candidate cell sources for cartilage and bone tissue en...
Cartilage tissue can be engineered by starting from a diversity of cell sources, including stem-cell...
In this study a three step culture system, 2D-3D sequential culture in vitro and further implantatio...
Cartilage defects have limited capacity for repair and are often replaced by fibrocartilage with inf...
International audienceInjuries to articular cartilage are one of the most challenging issues of musc...
Articular cartilage functions as a shock absorber and facilitates the free movement of joints. Curre...
By means of appropriate cell type and scaffold, tissue-engineering approaches aim to construct graft...
International audienceObjective: The long-term performance of cell-seeded matrix-based cartilage con...