Bone development, growth, and repair predominantly occur through the process of endochondral ossification, characterized by remodelling of cartilaginous templates. The same route efficiently supports engineering of bone marrow as a niche for hematopoietic stem cells (HSC). Here we describe a combined in vitro/in vivo system based on bone marrow-derived Mesenchymal Stem/Stromal Cells (MSC) that duplicates the hallmark cellular and molecular events of endochondral ossification during development. The model requires MSC culture with instructive molecules to generate hypertrophic cartilage tissues. The resulting constructs complete the endochondral route upon in vivo implantation, in the timeframe of up to 12 weeks. The described protocol is cl...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Three-dimensional clumps of mesenchymal stem cells (MSCs)/extracellular matrix (ECM) complexes (C-MS...
Embryonic development, lengthening, and repair of most bones proceed by endochondral ossification, n...
Recapitulation of endochondral ossification (ECO) (i.e., generation of marrow-containing ossicles th...
BACKGROUND: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Background: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Item does not contain fulltextEmbryonic stem cells can provide an unlimited supply of pluripotent ce...
Bone tissue engineering is currently undergoing a paradigm shift regarding the concepts used to deve...
Bone grafts can be engineered by differentiating human mesenchymal stromal cells (MSCs) via the endo...
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...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Three-dimensional clumps of mesenchymal stem cells (MSCs)/extracellular matrix (ECM) complexes (C-MS...
Embryonic development, lengthening, and repair of most bones proceed by endochondral ossification, n...
Recapitulation of endochondral ossification (ECO) (i.e., generation of marrow-containing ossicles th...
BACKGROUND: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Background: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Item does not contain fulltextEmbryonic stem cells can provide an unlimited supply of pluripotent ce...
Bone tissue engineering is currently undergoing a paradigm shift regarding the concepts used to deve...
Bone grafts can be engineered by differentiating human mesenchymal stromal cells (MSCs) via the endo...
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...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
Three-dimensional clumps of mesenchymal stem cells (MSCs)/extracellular matrix (ECM) complexes (C-MS...