International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising for cartilage tissue engineering. However, chondrogenic differentiation of MSC can ultimately lead to the formation of hypertrophic chondrocytes responsible for the calcification of cartilage. To prevent the production of this calcified matrix at the articular site, the late hypertrophic differentiation of MSCs must be carefully controlled. Given that articular cartilage is avascular, we hypothesized that in addition to its stimulatory role in the early differentiation of chondrogenic cells, hypoxia may prevent their late hypertrophic conversion.Methods: Early and late chondrogenic differentiation were evaluated using human adipose MSC and m...
International audienceCartilage engineering is one of the most challenging issue in regenerative med...
International audienceCartilage engineering is one of the most challenging issue in regenerative med...
Articular cartilage lacks an intrinsic repair capacity and due to the ability of mesenchymal stem ce...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
Background/Aims: Multipotent stem/stromal cells (MSC) are considered promising for cartilage tissue ...
SummaryBackgroundEngineering musculoskeletal cartilages with stem cells remains a challenge because ...
Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is reg...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Abstract Background and aims: Poor self-repairing is a characteristic of articular cartilage damage...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Actively steering the chondrogenic differentiation of mesenchymal stromal cells (MSCs) into either p...
Abstract Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is regulated b...
International audienceCartilage engineering is one of the most challenging issue in regenerative med...
International audienceCartilage engineering is one of the most challenging issue in regenerative med...
Articular cartilage lacks an intrinsic repair capacity and due to the ability of mesenchymal stem ce...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
International audienceBackground/Aims: Multipotent stem/stromal cells (MSC) are considered promising...
Background/Aims: Multipotent stem/stromal cells (MSC) are considered promising for cartilage tissue ...
SummaryBackgroundEngineering musculoskeletal cartilages with stem cells remains a challenge because ...
Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is reg...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Abstract Background and aims: Poor self-repairing is a characteristic of articular cartilage damage...
Purpose: The aim of this study was to evaluate the effects exerted over chondrogenic commitment of h...
Actively steering the chondrogenic differentiation of mesenchymal stromal cells (MSCs) into either p...
Abstract Background The chondrogenic differentiation of mesenchymal stem cells (MSCs) is regulated b...
International audienceCartilage engineering is one of the most challenging issue in regenerative med...
International audienceCartilage engineering is one of the most challenging issue in regenerative med...
Articular cartilage lacks an intrinsic repair capacity and due to the ability of mesenchymal stem ce...