OBJECTIVE: To identify markers associated with the chondrogenic capacity of expanded human articular chondrocytes and to use these markers for sorting of more highly chondrogenic subpopulations. METHODS: The chondrogenic capacity of chondrocyte populations derived from different donors (n = 21) or different clonal strains from the same cartilage biopsy specimen (n = 21) was defined based on the glycosaminoglycan (GAG) content of tissues generated using a pellet culture model. Selected cell populations were analyzed by microarray and flow cytometry. In some experiments, cells were sorted using antibodies against molecules found to be associated with differential chondrogenic capacity and again assessed in pellet cultures. RESULTS: Significan...
Previous studies have identified stem cell populations in articular cartilage using colony forming a...
OBJECTIVE: Articular cartilage-derived progenitor cells (ACPCs) are a potential new cell source for ...
Cartilage tissue engineering is a promising field in regenerative medicine that can provide substant...
SummaryObjectiveWe aimed to evaluate expression levels of nine candidate surface markers for chondro...
OBJECTIVE: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
Objective: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
The aim of this study was to investigate the interconnection between the processes of proliferation,...
DNA microarray analysis was used to investigate the molecular phenotype of one of the first human ch...
DNA microarray analysis was used to investigate the molecular phenotype of one of the first human ch...
SummaryObjectiveWe aimed to evaluate expression levels of nine candidate surface markers for chondro...
SummaryObjectiveCultures of primary articular chondrocytes for studying chondrocyte biology are noto...
Item does not contain fulltextOBJECTIVE: To obtain well characterized immortalized murine chondrocyt...
Previous studies have identified stem cell populations in articular cartilage using colony forming a...
Previous studies have identified stem cell populations in articular cartilage using colony forming a...
OBJECTIVE: Articular cartilage-derived progenitor cells (ACPCs) are a potential new cell source for ...
Previous studies have identified stem cell populations in articular cartilage using colony forming a...
OBJECTIVE: Articular cartilage-derived progenitor cells (ACPCs) are a potential new cell source for ...
Cartilage tissue engineering is a promising field in regenerative medicine that can provide substant...
SummaryObjectiveWe aimed to evaluate expression levels of nine candidate surface markers for chondro...
OBJECTIVE: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
Objective: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
The aim of this study was to investigate the interconnection between the processes of proliferation,...
DNA microarray analysis was used to investigate the molecular phenotype of one of the first human ch...
DNA microarray analysis was used to investigate the molecular phenotype of one of the first human ch...
SummaryObjectiveWe aimed to evaluate expression levels of nine candidate surface markers for chondro...
SummaryObjectiveCultures of primary articular chondrocytes for studying chondrocyte biology are noto...
Item does not contain fulltextOBJECTIVE: To obtain well characterized immortalized murine chondrocyt...
Previous studies have identified stem cell populations in articular cartilage using colony forming a...
Previous studies have identified stem cell populations in articular cartilage using colony forming a...
OBJECTIVE: Articular cartilage-derived progenitor cells (ACPCs) are a potential new cell source for ...
Previous studies have identified stem cell populations in articular cartilage using colony forming a...
OBJECTIVE: Articular cartilage-derived progenitor cells (ACPCs) are a potential new cell source for ...
Cartilage tissue engineering is a promising field in regenerative medicine that can provide substant...