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30 results on '"Wendy Koevoet"'

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1. Differences in Cartilage-Forming Capacity of Expanded Human Chondrocytes from Ear and Nose and Their Gene Expression Profiles

2. Cell-surface markers identify tissue resident multipotential stem/stromal cell subsets in synovial intimal and sub-intimal compartments with distinct chondrogenic properties

3. Bone Marrow–Harvesting Technique Influences Functional Heterogeneity of Mesenchymal Stem/Stromal Cells and Cartilage Regeneration

4. Dynamic Regulation of TWIST1 Expression During Chondrogenic Differentiation of Human Bone Marrow-Derived Mesenchymal Stem Cells

5. Recellularization of auricular cartilage via elastase-generated channels

6. The in vitro and in vivo capacity of culture-expanded human cells from several sources encapsulated in alginate to form cartilage

7. An Osteochondral Culture Model to Study Mechanisms Involved in Articular Cartilage Repair

8. Osteoarthritic synovial tissue inhibition of proteoglycan production in human osteoarthritic knee cartilage: Establishment and characterization of a long-term cartilage-synovium coculture

9. Differences in Cartilage-Forming Capacity of Expanded Human Chondrocytes From Ear and Nose and Their Gene Expression Profiles

10. Proteoglycan production is required in initial stages of new cartilage matrix formation but inhibits integrative cartilage repair

11. TGF beta affects collagen cross-linking independent of chondrocyte phenotype but strongly depending on physical environment

12. Elevated Levels of Cartilage Oligomeric Matrix Protein during In Vitro Cartilage Matrix Generation Decrease Collagen Fibril Diameter

13. Stromal cells from murine embryonic aorta-gonad-mesonephros region, liver and gut mesentary expand human umbilical cord blood-derived CAFCweek6 in extended long-term cultures

14. Connexin-43 gap junctions are involved in multiconnexin-expressing stromal support of hemopoietic progenitors and stem cells

15. Chondrogenesis of mesenchymal stem cells in an osteochondral environment is mediated by the subchondral bone

17. 161 SMAD2/3 SIGNALING IS CRUCIAL FOR CARTILAGE MAINTENANCE WHEREAS SMAD1/5/8 SIGNALING DETERMINES CHONDROCYTE TERMINAL DIFFERENTIATION

18. In-vivo generation of bone via endochondral ossification by in-vitro chondrogenic priming of adult human and rat mesenchymal stem cells

20. Intrinsic differentiation potential of adolescent human tendon tissue: an in-vitro cell differentiation study

21. Biochemical and functional modulation of the cartilage collagen network by IGF1, TGF beta 2 and FGF2

23. 474 EFFECT OF SYNOVIAL FLUID ON THE IMMUNOMODULATORY CAPACITY OF MESENCHYMAL STEM CELLS

25. 221 COLLAGEN TYPE IX AND CARTILAGE OLIGOMERIC MATRIX PROTEIN INFLUENCE CARTILAGE MATRIX ASSEMBLY

26. Erratum

27. The Releasate of Avascular Cartilage Demonstrates Inherent Pro-Angiogenic Properties In Vitro and In Vivo

28. Chondrogenic differentiation of human bone marrow-derived mesenchymal stem cells in a simulated osteochondral environment is hydrogel dependent

29. 482 ENDOCHONDRAL OSSIFICATION: AN ALTERNATIVE APPROACH FOR BONE REPAIR?

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