SummaryObjectivesThis review is focused on the influence of oxygen and derived reactive species on chondrocytes aging, metabolic function and chondrogenic phenotype.MethodsA systematic computer-aided search of the Medline database.ResultsArticular cartilage is an avascular tissue, and consequently oxygen supply is reduced. Although the basal metabolic functions of the cells are well adapted to hypoxia, the chondrocyte phenotype seems to be oxygen sensitive. In vitro, hypoxia promotes the expression of the chondrogenic phenotype and cartilage-specific matrix formation, indicating that oxygen tension is probably a key parameter in chondrocyte culture, and particularly in the context of tissue engineering and stem cells transplantation. Beside...
SummaryObjectivesTo test the hypothesis that age-related loss of chondrocytes in cartilage is associ...
AbstractObjectives: The metabolism of cells in articular joint tissues in normal and pathological co...
Background and Aim: Cartilage disorders may deteriorate following oxidative stress injuries affectin...
OBJECTIVES: This review is focused on the influence of oxygen and derived reactive species on chondr...
SummaryObjectivesThis review is focused on the influence of oxygen and derived reactive species on c...
Articular cartilage is an avascular tissue dependent on diffusion mainly from synovial fluid to serv...
Due to its avascular nature, articular cartilage is relatively hypoxic. The aim of this study was to...
Purpose: Articular cartilage is generally exposed to a finely regulated gradient of relatively low o...
AbstractArticular cartilage is a physiologically hypoxic tissue with a proposed gradient of oxygen t...
Articular chondrocytes reside in a unique and challenging avascular environment in cartilage. During...
Tissue-engineering approaches for cartilage repair hold promise for the treatment of cartilage defec...
SummaryObjectiveTo examine the effect of O2 and the role, and source, of reactive oxygen species (RO...
Abstract Background and aims: Poor self-repairing is a characteristic of articular cartilage damage...
Tissue-engineering approaches for cartilage repair hold promise for the treatment of cartilage defec...
Tissue-engineering approaches for cartilage repair hold promise for the treatment of cartilage defec...
SummaryObjectivesTo test the hypothesis that age-related loss of chondrocytes in cartilage is associ...
AbstractObjectives: The metabolism of cells in articular joint tissues in normal and pathological co...
Background and Aim: Cartilage disorders may deteriorate following oxidative stress injuries affectin...
OBJECTIVES: This review is focused on the influence of oxygen and derived reactive species on chondr...
SummaryObjectivesThis review is focused on the influence of oxygen and derived reactive species on c...
Articular cartilage is an avascular tissue dependent on diffusion mainly from synovial fluid to serv...
Due to its avascular nature, articular cartilage is relatively hypoxic. The aim of this study was to...
Purpose: Articular cartilage is generally exposed to a finely regulated gradient of relatively low o...
AbstractArticular cartilage is a physiologically hypoxic tissue with a proposed gradient of oxygen t...
Articular chondrocytes reside in a unique and challenging avascular environment in cartilage. During...
Tissue-engineering approaches for cartilage repair hold promise for the treatment of cartilage defec...
SummaryObjectiveTo examine the effect of O2 and the role, and source, of reactive oxygen species (RO...
Abstract Background and aims: Poor self-repairing is a characteristic of articular cartilage damage...
Tissue-engineering approaches for cartilage repair hold promise for the treatment of cartilage defec...
Tissue-engineering approaches for cartilage repair hold promise for the treatment of cartilage defec...
SummaryObjectivesTo test the hypothesis that age-related loss of chondrocytes in cartilage is associ...
AbstractObjectives: The metabolism of cells in articular joint tissues in normal and pathological co...
Background and Aim: Cartilage disorders may deteriorate following oxidative stress injuries affectin...