ObjectiveArticular cartilage of the knee joint is avascular, exists under a low oxygen tension microenvironment, and does not self-heal when injured. Human infrapatellar fat pad-sourced mesenchymal stem cells (IFP-MSC) are an arthroscopically accessible source of mesenchymal stem cells (MSC) for the repair of articular cartilage defects. Human IFP-MSC exists physiologically under a low oxygen tension (i.e., 1–5%) microenvironment. Human bone marrow mesenchymal stem cells (BM-MSC) exist physiologically within a similar range of oxygen tension. A low oxygen tension of 2% spontaneously induced chondrogenesis in micromass pellets of human BM-MSC. However, this is yet to be demonstrated in human IFP-MSC or other adipose tissue-sourced MSC. In th...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Project (M.A., Biological Sciences (Stem Cell))--California State University, Sacramento, 2012.Osteo...
Articular cartilage lacks an intrinsic repair capacity and due to the ability of mesenchymal stem ce...
SummaryBackgroundFor current tissue engineering or regenerative medicine strategies, chondrocyte (CC...
Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is reg...
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 ...
Abstract Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is regulated b...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
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 ...
SummaryBackgroundFor current tissue engineering or regenerative medicine strategies, chondrocyte (CC...
Umbilical cord blood (UCB) is an attractive alternative to bone marrow for isolation of mesenchymal ...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Project (M.A., Biological Sciences (Stem Cell))--California State University, Sacramento, 2012.Osteo...
Articular cartilage lacks an intrinsic repair capacity and due to the ability of mesenchymal stem ce...
SummaryBackgroundFor current tissue engineering or regenerative medicine strategies, chondrocyte (CC...
Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is reg...
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 ...
Abstract Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is regulated b...
International audiencePurpose: Multipotent stromal cell (MSC)-based regenerative strategy has shown ...
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 ...
SummaryBackgroundFor current tissue engineering or regenerative medicine strategies, chondrocyte (CC...
Umbilical cord blood (UCB) is an attractive alternative to bone marrow for isolation of mesenchymal ...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Project (M.A., Biological Sciences (Stem Cell))--California State University, Sacramento, 2012.Osteo...
Articular cartilage lacks an intrinsic repair capacity and due to the ability of mesenchymal stem ce...