Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the repair of traumatic cartilage injuries. The best supportive carrier material has not yet been determined. As natural components of cartilage’s extracellular matrix, hyaluronic acid and collagen are the focus of biomaterial research. In order to optimize chondrogenic support, we investigated three different scaffold compositions of a hyaluronic acid (HA)-gelatin based biomaterial. Methods: Human MSCs (hMSCs) were seeded under vacuum on composite scaffolds of three different HA-gelatin ratios and cultured in chondrogenic medium for 21 days. Cell-scaffold constructs were assessed at different time points for cell viability, gene expression pattern...
Objective: A currently investigated approach for the treatment of cartilage damage focuses on the us...
Composite scaffolds of homogeneously mixed esterified hyaluronan (HY) and gelatin (G) were manufd. w...
Articular cartilage is an incredibly tough tissue owing to its ability to withstand repetitive compr...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Clinical success on cartilage regeneration could be achieved by using available biomaterials and cel...
Clinical success on cartilage regeneration could be achieved by using available biomaterials and cel...
Objective: To study the possibility of primary human chondrocytes culture in gelatin scaffold and th...
Articular cartilage injuries of the knee are difficult to treat due to the poor healing ability of c...
Articular cartilage injuries of the knee are difficult to treat due to the poor healing ability of c...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Objective: A currently investigated approach for the treatment of cartilage damage focuses on the us...
Composite scaffolds of homogeneously mixed esterified hyaluronan (HY) and gelatin (G) were manufd. w...
Articular cartilage is an incredibly tough tissue owing to its ability to withstand repetitive compr...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Mesenchymal stem cells (MSCs) seeded on specific carrier materials are a promising source for the re...
Clinical success on cartilage regeneration could be achieved by using available biomaterials and cel...
Clinical success on cartilage regeneration could be achieved by using available biomaterials and cel...
Objective: To study the possibility of primary human chondrocytes culture in gelatin scaffold and th...
Articular cartilage injuries of the knee are difficult to treat due to the poor healing ability of c...
Articular cartilage injuries of the knee are difficult to treat due to the poor healing ability of c...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Traumatic injury and disease disrupt the ability of cartilage to carry joint stresses and, without a...
Objective: A currently investigated approach for the treatment of cartilage damage focuses on the us...
Composite scaffolds of homogeneously mixed esterified hyaluronan (HY) and gelatin (G) were manufd. w...
Articular cartilage is an incredibly tough tissue owing to its ability to withstand repetitive compr...