Autologous chondrocyte transplantation (ACT) has become a promising method for repairing large articular defects. However, dedifferentiation of chondrocytes during cell expansion remains a major limitation for ACT procedures. In this study, we explore the potential of confining cell shape for re-differentiation of dedifferentiated bovine chondrocytes. A novel culture system, combining 2D micropatterning with 3D matrix formation, was developed to control and maintain individual chondrocyte’s shape. Both collagen II synthesis and the mechanical properties of cells were monitored during re-differentiation. We show that a spherical morphology without cell spreading plays a limited role in induction of re-differentiation. Instead, isolated, dedi...
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Due to the limited self-repair capacity of articular cartilage, the surgical restoration of defectiv...
Autologous chondrocyte transplantation (ACT) has become a promising method for repairing large artic...
AbstractDedifferentiation of chondrocytes during in vitro expansion remains an unsolved challenge fo...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
AbstractDedifferentiation of chondrocytes during in vitro expansion remains an unsolved challenge fo...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
Dedifferentiation of chondrocytes during in vitro expansion remains an unsolved challenge for repair...
In vitro grown cartilage is functionally inferior to native tissue, and improvements in its quality ...
In vitro grown cartilage is functionally inferior to native tissue, and improvements in its quality ...
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Due to the limited self-repair capacity of articular cartilage, the surgical restoration of defectiv...
Autologous chondrocyte transplantation (ACT) has become a promising method for repairing large artic...
AbstractDedifferentiation of chondrocytes during in vitro expansion remains an unsolved challenge fo...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
AbstractDedifferentiation of chondrocytes during in vitro expansion remains an unsolved challenge fo...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
To obtain sufficient cell numbers for cartilage tissue engineering with autologous chondrocytes, cel...
Dedifferentiation of chondrocytes during in vitro expansion remains an unsolved challenge for repair...
In vitro grown cartilage is functionally inferior to native tissue, and improvements in its quality ...
In vitro grown cartilage is functionally inferior to native tissue, and improvements in its quality ...
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Chondrocytes within mature cartilage reside in a 3D matrix and adopt a distinctive round morphology....
Due to the limited self-repair capacity of articular cartilage, the surgical restoration of defectiv...