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Physical and Chemical Modifications of Polymeric Surfaces to Enhance Epithelial Cell Adhesion. [PDF]
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Hyper-adhesion: a new concept in cell–cell adhesion
Biochemical Society Transactions, 2008We have developed a new concept of cell–cell adhesion termed ‘hyper-adhesion’, the very strong adhesion adopted by desmosomes. This uniquely desmosomal property accounts for their ability to provide the intercellular links in the desmosome–intermediate filament complex.
Garrod, David, Kimura, Tomomi E.
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Cell exudation and cell adhesion
Experimental Cell Research, 1972Abstract Experiments are described in which the exudation of 51 Cr-labelled material from fibroblasts and Ehrlich ascites tumor (EAT) cells was correlated with their adhesion to cellular and noncellular surfaces, in vitro. A correlation coefficient of greater than + 0.90 was obtained for adhesion of cells to glass and the release associated with it ...
D E, Maslow, L, Weiss
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Current Opinion in Cell Biology, 1995
Adhesive interactions play a central role in cell migration. The regulation of these interactions requires the coordination of a multiplicity of signals, both spatially and temporally. The role of the integrin family has received considerable recent attention. Progress has been made in the elucidation of the mechanisms by which growth factors and other
A, Huttenlocher +2 more
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Adhesive interactions play a central role in cell migration. The regulation of these interactions requires the coordination of a multiplicity of signals, both spatially and temporally. The role of the integrin family has received considerable recent attention. Progress has been made in the elucidation of the mechanisms by which growth factors and other
A, Huttenlocher +2 more
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MRS Proceedings, 2007
AbstractIt is well known that silver deposition avoids bacterial growth and inhibits the natural process of attachment of connective tissue to biocompatible materials in vivo. We have completed a five year investigation of the precise spatial control of cell growth on glassy polymeric carbon implanted with silver using ion beam techniques, and the ...
Zimmerman, Robert Lee +2 more
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AbstractIt is well known that silver deposition avoids bacterial growth and inhibits the natural process of attachment of connective tissue to biocompatible materials in vivo. We have completed a five year investigation of the precise spatial control of cell growth on glassy polymeric carbon implanted with silver using ion beam techniques, and the ...
Zimmerman, Robert Lee +2 more
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Molecular Biotechnology, 2001
This chapter will outline in detail the two standard assays used in the author's laboratory for quantitating the adhesion of cells to an immobilized substrate. The attachment assay, which employs a colorimetric detection of bound cells, is based on Kueng et al.
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This chapter will outline in detail the two standard assays used in the author's laboratory for quantitating the adhesion of cells to an immobilized substrate. The attachment assay, which employs a colorimetric detection of bound cells, is based on Kueng et al.
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Experimental Cell Research, 1961
Abstract The adhesion of cells in the intact rat liver, and the surface properties of isolated cells have been studied. The removal of divalent ions, probably calcium, from the liver results in a loosening of the intercellular bond so that it may then be broken by a suitable force, but does not allow the cells to separate spontaneously.
J O, LAWS, L H, STICKLAND
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Abstract The adhesion of cells in the intact rat liver, and the surface properties of isolated cells have been studied. The removal of divalent ions, probably calcium, from the liver results in a loosening of the intercellular bond so that it may then be broken by a suitable force, but does not allow the cells to separate spontaneously.
J O, LAWS, L H, STICKLAND
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Cell Adhesion in Morphogenesis
Annual Review of Cell Biology, 1987MECHANISMS OF CELL ADHESION . .. . 320 CELL ADHESION AND MORPHOGENESIS • 324 Aggregation in Dictyostelium ..... ...... ... 324 Sea Urchin Gastrulation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
D R, McClay, C A, Ettensohn
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