Time-dependent changes in adhesive force between chondrocytes and silk fibroin substrate.
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[1] J. Gille,et al. Migration pattern, morphology and viability of cells suspended in or sealed with fibrin glue: a histomorphologic study. , 2005, Tissue & cell.
[2] Masahiro Kino-Oka,et al. Subculture of chondrocytes on a collagen type I-coated substrate with suppressed cellular dedifferentiation. , 2005, Tissue engineering.
[3] J. Nebe,et al. The influence of surface roughness of titanium on β1- and β3-integrin adhesion and the organization of fibronectin in human osteoblastic cells , 2005 .
[4] Andrés J. García,et al. Chondrocyte phenotypes on different extracellular matrix monolayers. , 2004, Biomaterials.
[5] M. Bhargava,et al. The effect of mechanical load on integrin subunits α5 and β1 in chondrocytes from mature and immature cartilage explants , 2004, Cell and Tissue Research.
[6] Guoping Chen,et al. Redifferentiation of dedifferentiated bovine chondrocytes when cultured in vitro in a PLGA–collagen hybrid mesh , 2003, FEBS letters.
[7] E. Thonar,et al. Human Septal Chondrocyte Redifferentiation in Alginate, Polyglycolic Acid Scaffold, and Monolayer Culture , 2003, The Laryngoscope.
[8] Bahman Anvari,et al. Temporal effects of cell adhesion on mechanical characteristics of the single chondrocyte , 2003, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[9] R. Loeser,et al. The α5β1 integrin provides matrix survival signals for normal and osteoarthritic human articular chondrocytes in vitro , 2002 .
[10] O. Tretinnikov,et al. Influence of Casting Temperature on the Near-Surface Structure and Wettability of Cast Silk Fibroin Films , 2001 .
[11] J. Murphy-Ullrich. The de-adhesive activity of matricellular proteins: is intermediate cell adhesion an adaptive state? , 2001, The Journal of clinical investigation.
[12] K. Sung,et al. Adhesive Force of Chondrocytes to Cartilage: Effects of Chondroitinase ABC , 2000, Clinical orthopaedics and related research.
[13] C. M. Agrawal,et al. Development of the cytodetachment technique to quantify mechanical adhesiveness of the single cell. , 1999, Biomaterials.
[14] D. Boettiger,et al. Modulation of cell proliferation and differentiation through substrate-dependent changes in fibronectin conformation. , 1999, Molecular biology of the cell.
[15] Andrés J. García,et al. Force Required to Break α5β1Integrin-Fibronectin Bonds in Intact Adherent Cells Is Sensitive to Integrin Activation State* , 1998, Journal of Biological Chemistry.
[16] P Ducheyne,et al. Effect of surface reaction stage on fibronectin-mediated adhesion of osteoblast-like cells to bioactive glass. , 1998, Journal of biomedical materials research.
[17] A. Yamamoto,et al. A new technique for direct measurement of the shear force necessary to detach a cell from a material. , 1998, Biomaterials.
[18] D. Boettiger,et al. Involvement of α5β1 Integrin in Matrix Interactions and Proliferation of Chondrocytes , 1997 .
[19] W. B. van den Berg,et al. Chondrocyte behaviour within different types of collagen gel in vitro. , 1995, Biomaterials.
[20] G. Truskey,et al. Effect of the conformation and orientation of adsorbed fibronectin on endothelial cell spreading and the strength of adhesion. , 1993, Journal of biomedical materials research.
[21] F. Grinnell,et al. Adsorption characteristics of plasma fibronectin in relationship to biological activity. , 1981, Journal of biomedical materials research.
[22] Peter Müller,et al. Relationship between cell shape and type of collagen synthesised as chondrocytes lose their cartilage phenotype in culture , 1977, Nature.
[23] Y. Morita,et al. Culture of chondrocytes in fibroin-hydrogel sponge. , 2003, Bio-medical materials and engineering.
[24] R. Loeser. Integrins and cell signaling in chondrocytes. , 2002, Biorheology.
[25] K. Ikeuchi,et al. Visco-elastic properties of cartilage tissue regenerated with fibroin sponge. , 2002, Bio-medical materials and engineering.
[26] M. Nagumo,et al. Adhesion of a chondrocytic cell line (USAC) to fibronectin and its regulation by proteoglycan. , 2002, Journal of oral pathology & medicine : official publication of the International Association of Oral Pathologists and the American Academy of Oral Pathology.
[27] N. Forest,et al. Phenotypic modulation of nasal septal chondrocytes by cytoskeleton modification. , 2000, Biorheology.
[28] T. Aigner,et al. Transplantation of allograft chondrocytes embedded in agarose gel into cartilage defects of rabbits. , 1998, Osteoarthritis and cartilage.
[29] N. Forest,et al. Cytochalasin D induces changes in cell shape and promotes in vitro chondrogenesis: A morphological study , 1995, Biology of the cell.