The influence of environmental factors on bone tissue engineering.
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Summary
This review highlights the important influence of environmental factors on bone tissue engineering and the intangible aspects of the milieu.
- Type
- review
- Published
- 2013-05-01
- Cited by
- 24
- References
- 156
- OpenAlex
- https://openalex.org/W1984095315
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:35513179
Keywords
Scaffold, Regeneration (biology), Tissue engineering, Medicine, Cell biology
References
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- The Sequential Expression Profiles of Growth Factors from Osteroprogenitors to Osteoblasts In Vitro
- Bone Matrix Proteins: More Than Markers
- Biological Basis of Bone Formation, Remodeling, and Repair—Part I: Biochemical Signaling Molecules
- Bioreactor Systems for Bone Tissue Engineering
- BMPs promote proliferation and migration of endothelial cells via stimulation of VEGF-A/VEGFR2 and angiopoietin-1/Tie2 signalling.
- Bioreactors and Bioprocessing for Tissue Engineering
Cited by
- Validation of an in vitro 3D bone culture model with perfused and mechanically stressed ceramic scaffold.
- In Vitro Three-Dimensional Bone Tissue Models: From Cells to Controlled and Dynamic Environment
- Biomimetic Scaffolds for Osteogenesis.
- Tissue‐specific composite cell aggregates drive periodontium tissue regeneration by reconstructing a regenerative microenvironment
- Osteogenesis on nanoparticulate mineralized collagen scaffolds via autogenous activation of the canonical BMP receptor signaling pathway
- Signaling pathways in osteogenesis and osteoclastogenesis: Lessons from cranial sutures and applications to regenerative medicine
- Overcoming physical constraints in bone engineering: ‘the importance of being vascularized’
- DPSC colonization of functionalized 3D textiles.
- Nanoparticulate Mineralized Collagen Scaffolds Induce In Vivo Bone Regeneration Independent of Progenitor Cell Loading or Exogenous Growth Factor Stimulation
- Optimizing Collagen Scaffolds for Bone Engineering: Effects of Cross-linking and Mineral Content on Structural Contraction and Osteogenesis
- Composite cell sheet for periodontal regeneration: crosstalk between different types of MSCs in cell sheet facilitates complex periodontal-like tissue regeneration
- Cytokine, Chemokine, and Growth Factor Profile Characterization of Undifferentiated and Osteoinduced Human Adipose-Derived Stem Cells
- Development of a composite tissue engineered alveolar bone-mucosal model using conventional and 3D printed scaffolding techniques
- The Synergistic Effect of Bone Graft Substitute Architecture and Mechanical Environment on hMSCs Responses in vitro
- Strategy for achieving standardized bone models
- Feedback-Controlled Release of Alendronate from Composite Microparticles
- Recent Advances in Mechanically Loaded Human Mesenchymal Stem Cells for Bone Tissue Engineering
- Experimental Progress of Adipose-Derived Stem Cells Combined with Different Scaffolds to Repair Bone Defects
- Effect of bimaxillary surgery on the stress distributions in patients with mandibular retrognathia under unilateral molar clenching
- Formation of osteoconductive biograft with bioorganic scaffold, human mesenchymal stromal cells, and platelet rich plasma with its evaluation in vitro
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