The natural process of endochondral bone formation in the growing skeletal system is increasingly inspiring the field of bone tissue engineering. However, in order to create relevant-size bone grafts, a cell carrier is required that ensures a high diffusion rate and facilitates matrix formation, balanced by its degradation. Therefore, we set out to engineer endochondral bone in gelatin methacrylamide (GelMA) hydrogels with embedded multipotent stromal cells (MSCs) and cartilage-derived matrix (CDM) particles. CDM particles were found to stimulate the formation of a cartilage template by MSCs in the GelMA hydrogel in vitro. In a subcutaneous rat model, this template was subsequently remodeled into mineralized bone tissue, including bone-marr...
Treatment of large and complex bone defects remains a significant clinical problem. Due to the defec...
Decellularized tissues have proven to be versatile matrices for the engineering of tissues and organ...
Articular cartilage defects have limited healing potential and, when left untreated, can lead to ost...
Despite the various reported approaches to generate osteochondral composites by combination of diffe...
Following an endochondral approach to bone regeneration, multipotent stromal cells (MSCs) can be cul...
Cartilaginous tissues engineered using mesenchymal stem cells (MSCs) can be leveraged to generate bo...
Cartilaginous tissues engineered using mesenchymal stem cells (MSCs) can be leveraged to generate bo...
Tissue engineering is a multidisciplinary field that combines cells, biomaterial scaffolds and envir...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Large bone defects cannot form a callus and exhibit high complication rates even with the best treat...
Bone matrix gelatin (BMG) has been used for bone induction intramuscularly and subcutaneously by man...
Devitalized hypertrophic cartilage matrix (DCM) is an attractive concept for an off-the-shelf bone g...
Three-dimensional clumps of mesenchymal stem cells (MSCs)/extracellular matrix (ECM) complexes (C-MS...
Gelatin methacrylate (GelMA) is an inexpensive, photocrosslinkable, cell-responsive hydrogel which h...
Treatment of large and complex bone defects remains a significant clinical problem. Due to the defec...
Decellularized tissues have proven to be versatile matrices for the engineering of tissues and organ...
Articular cartilage defects have limited healing potential and, when left untreated, can lead to ost...
Despite the various reported approaches to generate osteochondral composites by combination of diffe...
Following an endochondral approach to bone regeneration, multipotent stromal cells (MSCs) can be cul...
Cartilaginous tissues engineered using mesenchymal stem cells (MSCs) can be leveraged to generate bo...
Cartilaginous tissues engineered using mesenchymal stem cells (MSCs) can be leveraged to generate bo...
Tissue engineering is a multidisciplinary field that combines cells, biomaterial scaffolds and envir...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Large bone defects cannot form a callus and exhibit high complication rates even with the best treat...
Bone matrix gelatin (BMG) has been used for bone induction intramuscularly and subcutaneously by man...
Devitalized hypertrophic cartilage matrix (DCM) is an attractive concept for an off-the-shelf bone g...
Three-dimensional clumps of mesenchymal stem cells (MSCs)/extracellular matrix (ECM) complexes (C-MS...
Gelatin methacrylate (GelMA) is an inexpensive, photocrosslinkable, cell-responsive hydrogel which h...
Treatment of large and complex bone defects remains a significant clinical problem. Due to the defec...
Decellularized tissues have proven to be versatile matrices for the engineering of tissues and organ...
Articular cartilage defects have limited healing potential and, when left untreated, can lead to ost...