Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering applications. Bone tissue engineering by directly differentiating ES cells (ESCs) into osteoblasts has been unsuccessful so far. Therefore, we investigated an alternative approach, based on the process of endochondral ossification. A cartilage matrix was formed in vitro by mouse ESCs seeded on a scaffold. When these cartilage tissue-engineered constructs (CTECs) were implanted s.c., the cartilage matured, became hypertrophic, calcified, and was ultimately replaced by bone tissue in the course of 21 days. Bone aligning hypertrophic cartilage was observed frequently. Using various chondrogenic differentiation periods in vitro, we demonstrated that...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
IntroductionCurrent tissue engineering strategies to heal critical-size bone defects through direct ...
Mimicking endochondral ossification to engineer constructs offers a novel solution to overcoming the...
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...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Various cell types have been investigated as candidate cell sources for cartilage and bone tissue en...
BACKGROUND: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Background: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Bone tissue engineering is currently undergoing a paradigm shift regarding the concepts used to deve...
Bone development, growth, and repair predominantly occur through the process of endochondral ossific...
Embryonic development, lengthening, and repair of most bones proceed by endochondral ossification, n...
Bone has innate ability to regenerate following injury. However, large and complex fractures exceed ...
Recapitulation of endochondral ossification (ECO) (i.e., generation of marrow-containing ossicles th...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
IntroductionCurrent tissue engineering strategies to heal critical-size bone defects through direct ...
Mimicking endochondral ossification to engineer constructs offers a novel solution to overcoming the...
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...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Tissue engineering aims at repairing or replacing damaged or diseased tissue. In this thesis, we inv...
Various cell types have been investigated as candidate cell sources for cartilage and bone tissue en...
BACKGROUND: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Background: Bone grafts are required to repair large bone defects after tumour resection or large tr...
Bone tissue engineering is currently undergoing a paradigm shift regarding the concepts used to deve...
Bone development, growth, and repair predominantly occur through the process of endochondral ossific...
Embryonic development, lengthening, and repair of most bones proceed by endochondral ossification, n...
Bone has innate ability to regenerate following injury. However, large and complex fractures exceed ...
Recapitulation of endochondral ossification (ECO) (i.e., generation of marrow-containing ossicles th...
Despite its natural healing potential, bone is unable to regenerate sufficient tissue within critica...
IntroductionCurrent tissue engineering strategies to heal critical-size bone defects through direct ...
Mimicking endochondral ossification to engineer constructs offers a novel solution to overcoming the...