Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
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Delayed minimally invasive injection of allogenic bone marrow stromal cell sheets regenerates large bone defects in an ovine preclinical animal modelIn vitro and in vivo evaluation of self-mineralization and biocompatibility of injectable, dual-gelling hydrogels for bone tissue engineering.Strategies and First Advances in the Development of Prevascularized Bone ImplantsSelf-organization and the self-assembling process in tissue engineeringPerivascular-like cells contribute to the stability of the vascular network of osteogenic tissue formed from cell sheet-based constructsDouble-layered cell transfer technology for bone regeneration.Engineering biomimetic periosteum with β-TCP scaffolds to promote bone formation in calvarial defects of rats.Fabrication, vascularization and osteogenic properties of a novel synthetic biomimetic induced membrane for the treatment of large bone defectsMacromolecular crowding meets tissue engineering by self-assembly: a paradigm shift in regenerative medicine.Macromolecular crowding meets oxygen tension in human mesenchymal stem cell culture - A step closer to physiologically relevant in vitro organogenesis.Cell sheet engineering and its application for periodontal regeneration.Cell sheet engineering for regenerative medicine: current challenges and strategies.Scaffold and scaffold-free self-assembled systems in regenerative medicine.A Cell-Based Self-Assembly Approach for the Production of Human Osseous Tissues from Adipose-Derived Stromal/Stem Cells.Progress of key strategies in development of electrospun scaffolds: bone tissue.Interactions between Schwann and olfactory ensheathing cells with a starch/polycaprolactone scaffold aimed at spinal cord injury repair.A unique heterologous fibrin sealant (HFS) as a candidate biological scaffold for mesenchymal stem cells in osteoporotic rats.Evaluation of BMMSCs-EPCs sheets for repairing alveolar bone defects in ovariectomized rats.Osteogenic Ability of Canine Adipose-Derived Mesenchymal Stromal Cell Sheets in Relation to Culture Time.Osteoblastic mesenchymal stem cell sheet combined with Choukroun platelet-rich fibrin induces bone formation at an ectopic site.Endothelial cells enhance the in vivo bone-forming ability of osteogenic cell sheets.Reproducible subcutaneous transplantation of cell sheets into recipient miceStimuli-Responsive Surfaces for Biomedical Applications
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P2860
Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
description
article
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wetenschappelijk artikel
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наукова стаття, опублікована в червні 2011
@uk
name
Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
@en
Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
@nl
type
label
Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
@en
Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
@nl
prefLabel
Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
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Development of Osteogenic Cell Sheets for Bone Tissue Engineering Applications
@nl
P2093
P50
P921
P1476
Development of osteogenic cell sheets for bone tissue engineering applications
@en
P2093
Haruko Obokata
Masayuki Yamato
Satoshi Tsuneda
Takanori Iwata
Teruo Okano
P304
P356
10.1089/TEN.TEA.2010.0470
P577
2011-04-12T00:00:00Z