AbstractCell cultures were initiated from epiphyseal cartilages, diaphyseal periosteum, and muscle of 16-week human fetuses. Total RNAs isolated from these cultures were analyzed for the levels of mRNAs for major fibrillar collagens, two proteoglycan core proteins and osteonectin. In standard monolayer cultures the differentiated chondrocyte phenotype was replaced by a dedifferentiated one: the mRNA levels of cartilage-specific type II collagen decreased upon subculturing, while those of types I and III collagen, and the core proteins increased. When the cells were transferred to grow in agarose, redifferentiation (reappearance of type II collagen mRNA) occurred. Fibroblasts grown from periosteum and muscle were found to contain mRNAs for t...
Dedifferentiated chondrocytes cultured adherent to the substratum proliferate and synthesize large a...
AbstractObjective Cell-matrix interactions are important regulators of cellular functions, including...
AbstractChick periosteum-derived cells, which do not enter the chondrogenic cell lineage during norm...
AbstractCell cultures were initiated from epiphyseal cartilages, diaphyseal periosteum, and muscle o...
SummaryThe formation of chondro-osteophytes in osteoarthritic joints is a unique example of adult ne...
Tissue engineering of articular cartilage in order to restore the function of degenerated, diarthrod...
SummaryObjectiveThree-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. How...
To circumvent the problem of sufficient number of cells for cartilage engineering, we previously dev...
AbstractObjective: Biochemical analysis indicates the presence of collagen type I in fibrocartilagin...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...
SummaryObjective:This study was undertaken in order to examine phenotypic modulation of the chondroc...
Expression of the α1(II) procollagen gene is not confined to chondrogenic tissues during vertebrate ...
DNA microarray analysis was used to investigate the molecular phenotype of one of the first human ch...
Human mesenchymal stem cells (hMSCs) can differentiate into cells of connective tissue lineages, inc...
AbstractObjectiveThe aim of the present study was to investigate gene expression during the in vitro...
Dedifferentiated chondrocytes cultured adherent to the substratum proliferate and synthesize large a...
AbstractObjective Cell-matrix interactions are important regulators of cellular functions, including...
AbstractChick periosteum-derived cells, which do not enter the chondrogenic cell lineage during norm...
AbstractCell cultures were initiated from epiphyseal cartilages, diaphyseal periosteum, and muscle o...
SummaryThe formation of chondro-osteophytes in osteoarthritic joints is a unique example of adult ne...
Tissue engineering of articular cartilage in order to restore the function of degenerated, diarthrod...
SummaryObjectiveThree-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. How...
To circumvent the problem of sufficient number of cells for cartilage engineering, we previously dev...
AbstractObjective: Biochemical analysis indicates the presence of collagen type I in fibrocartilagin...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...
SummaryObjective:This study was undertaken in order to examine phenotypic modulation of the chondroc...
Expression of the α1(II) procollagen gene is not confined to chondrogenic tissues during vertebrate ...
DNA microarray analysis was used to investigate the molecular phenotype of one of the first human ch...
Human mesenchymal stem cells (hMSCs) can differentiate into cells of connective tissue lineages, inc...
AbstractObjectiveThe aim of the present study was to investigate gene expression during the in vitro...
Dedifferentiated chondrocytes cultured adherent to the substratum proliferate and synthesize large a...
AbstractObjective Cell-matrix interactions are important regulators of cellular functions, including...
AbstractChick periosteum-derived cells, which do not enter the chondrogenic cell lineage during norm...