Articular cartilage provides a bearing surface for transmitting forces across joints. The poor ability of cartilage to self-repair has motivated efforts to engineer replacement tissues, and mesenchymal stem cells (MSCs), which can undergo chondrogenesis, have emerged as a promising cell source. To date however, the functional properties of MSC-based constructs remain lower than those of the native tissue and of chondrocyte-based constructs cultured identically. Therefore, the overall objective of this thesis is to better understand the transcriptional and functional limitations underlying chondrogenic differentiation and enhance MSC chondrogenesis. Toward this end, established tissue engineering strategies from the chondrocyte literature we...
To date, there are no surgical interventions that can fully restore damaged cartilage. While the fie...
To date, there are no surgical interventions that can fully restore damaged cartilage. While the fie...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Articular cartilage provides a bearing surface for transmitting forces across joints. The poor abili...
Articular cartilage provides a bearing surface for transmitting forces across joints. The poor abili...
Articular cartilage provides a bearing surface for transmitting forces across joints. The poor abil...
Osteoarthritis is a disease of high incidence with significant clinical impact. Unfortunately, join...
The primary goal of cartilage tissue engineering is to recapitulate the functional properties and st...
The inability of adult articular cartilage to regenerate has motivated the development of tissue eng...
Articular cartilage is susceptible to damage, but its self-repair is hindered by its avascular natur...
Abstract Background Mesenchymal stem cells (MSCs) hold promising translational potential in cartilag...
International audienceArticular cartilage is a connective tissue, composed of chondrocytes, which re...
This thesis contributes to two aspects of cartilage research: understanding the biomechanical charac...
Articular cartilage is an incredibly tough tissue owing to its ability to withstand repetitive compr...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
To date, there are no surgical interventions that can fully restore damaged cartilage. While the fie...
To date, there are no surgical interventions that can fully restore damaged cartilage. While the fie...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Articular cartilage provides a bearing surface for transmitting forces across joints. The poor abili...
Articular cartilage provides a bearing surface for transmitting forces across joints. The poor abili...
Articular cartilage provides a bearing surface for transmitting forces across joints. The poor abil...
Osteoarthritis is a disease of high incidence with significant clinical impact. Unfortunately, join...
The primary goal of cartilage tissue engineering is to recapitulate the functional properties and st...
The inability of adult articular cartilage to regenerate has motivated the development of tissue eng...
Articular cartilage is susceptible to damage, but its self-repair is hindered by its avascular natur...
Abstract Background Mesenchymal stem cells (MSCs) hold promising translational potential in cartilag...
International audienceArticular cartilage is a connective tissue, composed of chondrocytes, which re...
This thesis contributes to two aspects of cartilage research: understanding the biomechanical charac...
Articular cartilage is an incredibly tough tissue owing to its ability to withstand repetitive compr...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
To date, there are no surgical interventions that can fully restore damaged cartilage. While the fie...
To date, there are no surgical interventions that can fully restore damaged cartilage. While the fie...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...