Mesenchymal stem cells (MSCs) are a potential source of chondrogenic cells for the treatment of cartilage disorders, but loss of chondrogenic potential during in vitro expansion and the propensity of cartilage to undergo hypertrophic maturation impede their therapeutic application. Here we report that the signaling protein WNT3A, in combination with FGF2, supports long-term expansion of human bone marrow-derived MSCs. The cells retained their chondrogenic potential and other phenotypic and functional properties of multipotent MSCs, which were gradually lost in the absence of WNT3A. Moreover, we discovered that endogenous WNT signals are the main drivers of the hypertrophic maturation that follows chondrogenic differentiation. Inhibition of ...
differentiation of chondrocytes is a main barrier in application of mesenchymal stem cells (MSCs) fo...
AbstractThe Wnt family of secreted signaling proteins are implicated in regulating morphogenesis and...
WNT signalling is a major driving force in cartilage development, chondrocyte differentiation, and h...
SummaryMesenchymal stem cells (MSCs) are a potential source of chondrogenic cells for the treatment ...
textabstractMesenchymal stem cells (MSCs) are a potential source of chondrogenic cells for the treat...
Mesenchymal stem cells (MSCs) are multipotent cells, mainly from bone marrow, and an ideal source of...
Mesenchymal stem cells (MSCs) are multipotent cells, mainly from bone marrow, and an ideal source of...
Summary: Human mesenchymal stem cells (MSCs) remain one of the best cell sources for cartilage, a ti...
AbstractObjective Members of the Wnt signaling protein family are expressed during cartilage develop...
Hypertrophic differentiation of chondrocytes is a main barrier in application of mesenchymal stem ce...
In adult articular cartilage, the extracellular matrix is maintained by a balance between the degrad...
The field of regenerative medicine has increasingly recognized the importance to be inspired by deve...
Bone marrow-derived mesenchymal stem cells are a promising source of cells for cartilage regeneratio...
SummaryThe formation of cartilage is restricted to the core of the limb bud mesenchyme by ectodermal...
SummaryObjectiveAlthough Wnt signaling is a key regulator of the chondrocyte life cycle during embry...
differentiation of chondrocytes is a main barrier in application of mesenchymal stem cells (MSCs) fo...
AbstractThe Wnt family of secreted signaling proteins are implicated in regulating morphogenesis and...
WNT signalling is a major driving force in cartilage development, chondrocyte differentiation, and h...
SummaryMesenchymal stem cells (MSCs) are a potential source of chondrogenic cells for the treatment ...
textabstractMesenchymal stem cells (MSCs) are a potential source of chondrogenic cells for the treat...
Mesenchymal stem cells (MSCs) are multipotent cells, mainly from bone marrow, and an ideal source of...
Mesenchymal stem cells (MSCs) are multipotent cells, mainly from bone marrow, and an ideal source of...
Summary: Human mesenchymal stem cells (MSCs) remain one of the best cell sources for cartilage, a ti...
AbstractObjective Members of the Wnt signaling protein family are expressed during cartilage develop...
Hypertrophic differentiation of chondrocytes is a main barrier in application of mesenchymal stem ce...
In adult articular cartilage, the extracellular matrix is maintained by a balance between the degrad...
The field of regenerative medicine has increasingly recognized the importance to be inspired by deve...
Bone marrow-derived mesenchymal stem cells are a promising source of cells for cartilage regeneratio...
SummaryThe formation of cartilage is restricted to the core of the limb bud mesenchyme by ectodermal...
SummaryObjectiveAlthough Wnt signaling is a key regulator of the chondrocyte life cycle during embry...
differentiation of chondrocytes is a main barrier in application of mesenchymal stem cells (MSCs) fo...
AbstractThe Wnt family of secreted signaling proteins are implicated in regulating morphogenesis and...
WNT signalling is a major driving force in cartilage development, chondrocyte differentiation, and h...