Objective: Our goal was to engineer cartilage in vivo using auricular chondrocytes that underwent clinically relevant expansion and using methodologies that could be easily translated into health care practice. Design: Sheep and human chondrocytes were isolated from auricular cartilage biopsies and expanded in vitro. To reverse dedifferentiation, expanded cells were either mixed with cryopreserved P0 chondrocytes at the time of seeding onto porous collagen scaffolds or proliferated with basic fibroblast growth factor (bFGF). After 2-week in vitro incubation, seeded scaffolds were implanted subcutaneously in nude mice for 6 weeks. The neocartilage quality was evaluated histologically; DNA and glycosaminoglycans were quantified. Cell prolifer...
Bone marrow-derived mesenchymal stem cells (BMSCs) can be obtained by minimally invasive means and w...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
The insufficient healing capacity of articular cartilage necessitates mechanically functional biolog...
Regenerative medicine techniques are currently being investigated to replace damaged cartilage. Crit...
Cultivation of phenotypically stable auricular chondrocytes will have applications in autologous cho...
Cultivation of phenotypically stable auricular chondrocytes will have applications in autologous cho...
Cultivation of phenotypically stable auricular chondrocytes will have applications in autologous cho...
In the repair of cartilage defects, autologous tissue offers the advantage of lasting biocompatibili...
Monolayer culture expansion remains as a fundamental step to acquire sufficient number of cells for ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Expanded costochondral cells provide a clinically relevant cell source for engineering both fibrous ...
Bone marrow-derived mesenchymal stem cells (BMSCs) can be obtained by minimally invasive means and w...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
The insufficient healing capacity of articular cartilage necessitates mechanically functional biolog...
Regenerative medicine techniques are currently being investigated to replace damaged cartilage. Crit...
Cultivation of phenotypically stable auricular chondrocytes will have applications in autologous cho...
Cultivation of phenotypically stable auricular chondrocytes will have applications in autologous cho...
Cultivation of phenotypically stable auricular chondrocytes will have applications in autologous cho...
In the repair of cartilage defects, autologous tissue offers the advantage of lasting biocompatibili...
Monolayer culture expansion remains as a fundamental step to acquire sufficient number of cells for ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
Expanded costochondral cells provide a clinically relevant cell source for engineering both fibrous ...
Bone marrow-derived mesenchymal stem cells (BMSCs) can be obtained by minimally invasive means and w...
Paramount for the generation of auricular structures of clinically-relevant size is the acquisition ...
The insufficient healing capacity of articular cartilage necessitates mechanically functional biolog...