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Intracellular signaling involved in macrophage adhesion and FBGC formation as mediated by ligand-substrate interaction
Conference paper   Peer reviewed

Intracellular signaling involved in macrophage adhesion and FBGC formation as mediated by ligand-substrate interaction

Weiyuan John Kao and Yiping Liu
Journal of Biomedical Materials Research, Vol.62(4), pp.478-487
12/2002
PMID: 12378693

Abstract

Fibronectin Host foreign-body reaction PHSRN Protein kinase RGD Biomaterials Biomedical Engineering
Fibronectin and RGD- and/or PHSRN-containing oligopeptides were preadsorbed onto physicochemically distinct substrata: polyethyleneglycol-based networks or tissue culture polystyrene (TCPS). The role of selected signaling kinases (namely protein tyrosine kinases, protein serine/threonine kinases, PI3-kinase, Src, and MAPK) in the adhesion of human primary blood-derived macrophages and the formation of foreign-body giant cells (FBGC) on these modified substrata was investigated. The involvement of individual intracellular signaling molecules in mediating macrophage adhesion dynamically varied with the culture time, substrate, and ligand. For example, fibronectin on TCPS or networks involved similar signaling events for macrophage adhesion; however, fibronectin and G 3 RGDG 6 PHSRNG, but not peptides with other RGD and/or PHSRN orientations, mediated similar signaling events for macrophage adhesion on TCPS but mediated different signaling events on networks. Depending on the substrate, a specific molecule (i.e., Src, protein kinase C) within the protein tyrosine kinase or protein serine/threonine kinase family was either an antagonist or agonist in mediating FBGC formation. © 2002 Wiley Periodicals, Inc.

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