Growth Factors for Clinical-Scale Expansion of Human Articular Chondrocytes: Relevance for Automated Bioreactor Systems
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Summary
By allowing large numbers of cells to be obtained, starting from a wide range of initial seeding densities and HS percentages, the use of TFP may represent a viable solution for the efficient expansion of HACs and addresses constraints of automated clinical bioreactor systems.
- Type
- article
- Published
- 2007-06-01
- Cited by
- 61
- References
- 29
- Access
- Open access
- OpenAlex
- https://openalex.org/W17518725
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23294207
Keywords
Hazardous waste, Environmental science, Waste management, Engineering, Research center
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- Cartilage tissue engineering with human chondrocytes from osteoarthritic knees and a semi-permeable membrane
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- Technical strategies to improve tissue engineering of cartilage-carrier-constructs.
- The clinical status of cartilage tissue regeneration in humans.
- Hypoxia Promotes the Differentiated Human Articular Chondrocyte Phenotype through SOX9-dependent and -independent Pathways*
- Investigation of Collagen Transplants Seeded with Human Autologous Chondrocytes at the Time of Transplantation
- Tissue engineering: strategies, stem cells and scaffolds
- Comparative Chondrogenesis of Human Cell Sources in 3D Scaffolds
- Potential of Human Embryonic Stem Cells in Cartilage Tissue Engineering and Regenerative Medicine
- Controlling Medium Osmolality Improves the Expansion of Human Articular Chondrocytes in Serum-Free Media
- Growth Factor Priming Differentially Modulates Components of the Extracellular Matrix Proteome in Chondrocytes and Synovium-Derived Stem Cells
- Influence of the growth factors PDGF‐BB, TGF‐β1 and bFGF on the replicative aging of human articular chondrocytes during in vitro expansion
- Effect of three-dimensional expansion and cell seeding density on the cartilage-forming capacity of human articular chondrocytes in type II collagen sponges.
- Cartilage Tissue Formation Using Redifferentiated Passaged Chondrocytes In Vitro
- Protection of Bovine Chondrocyte Phenotype by Heat Inactivation of Allogeneic Serum in Monolayer Expansion Cultures
- Tissue engineering and growth factors: updated evidence