SummaryBackgroundFor current tissue engineering or regenerative medicine strategies, chondrocyte (CC)- or mesenchymal stem cell (MSC)-seeded constructs are typically cultured in normoxic conditions (20% oxygen). However, within the knee joint capsule a lower oxygen tension exists.ObjectiveThe objective of this study was to investigate how CCs and infrapatellar fad pad derived MSCs will respond to a low oxygen (5%) environment in 3D agarose culture. Our hypothesis was that culture in a low oxygen environment (5%) will enhance the functional properties of cartilaginous tissues engineered using both cell sources.Experimental designCell-encapsulated agarose hydrogel constructs (seeded with CCs or infrapatellar fat pad (IFP) derived MSCs) were p...
Abstract Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is regulated b...
Umbilical cord blood (UCB) is an attractive alternative to bone marrow for isolation of mesenchymal ...
SummaryBackgroundEngineering musculoskeletal cartilages with stem cells remains a challenge because ...
SummaryBackgroundFor current tissue engineering or regenerative medicine strategies, chondrocyte (CC...
ObjectiveArticular cartilage of the knee joint is avascular, exists under a low oxygen tension micro...
During fracture healing and microfracture treatment of cartilage defects mesenchymal stem cells (MSC...
<div><p>Background</p><p>Current tissue engineering methods are insufficient for total joint resurfa...
Purpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown promise for the repair...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
Adult articular cartilage is a hypoxic tissue, with oxygen tension ranging from <10% at the carti...
Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is reg...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
Abstract Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is regulated b...
Umbilical cord blood (UCB) is an attractive alternative to bone marrow for isolation of mesenchymal ...
SummaryBackgroundEngineering musculoskeletal cartilages with stem cells remains a challenge because ...
SummaryBackgroundFor current tissue engineering or regenerative medicine strategies, chondrocyte (CC...
ObjectiveArticular cartilage of the knee joint is avascular, exists under a low oxygen tension micro...
During fracture healing and microfracture treatment of cartilage defects mesenchymal stem cells (MSC...
<div><p>Background</p><p>Current tissue engineering methods are insufficient for total joint resurfa...
Purpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown promise for the repair...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
Adult articular cartilage is a hypoxic tissue, with oxygen tension ranging from <10% at the carti...
Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is reg...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
Abstract Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is regulated b...
Umbilical cord blood (UCB) is an attractive alternative to bone marrow for isolation of mesenchymal ...
SummaryBackgroundEngineering musculoskeletal cartilages with stem cells remains a challenge because ...