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Cell adhesion and integrin expression are modulated by oxidative stress in EA.hy 926 cells
Authors:Foudil Lamari  Nushjira Pongnimitprasert  Maguy Bernard  Marie-Jose Foglietti  Christian Derappe
Institution:1. Laboratoire de Biochimie Générale et de Glycobiologie, U.F.R. des Sciences Pharmaceutiques et Biologiques, Université paris, 5 René Descartes, 4 avenue de l'Observatoire, 75006, Paris, France;2. Hopital Pitié-Salpétrière, Assistance Publique-Hopitaux de Paris, Paris, France;3. INSERM, U773, Centre de Recherche Biomédicale Bichat Beaujon CRB3, Université Paris7 Denis Diderot, site Bichat Denis Diderot, 16 rue Henri Huchard, 75018, Paris, France;4. Hopital Pitié-Salpétrière, Assistance Publique-Hopitaux de Paris, Paris, France
Abstract:The effects of oxidative stress on integrin-mediated cell adhesion to the extracellular matrix (ECM) and related apoptosis were investigated using the EA.hy926 endothelial cells treated (or not) with two oxidants: the hypoxanthine/xanthine oxidase system (HX/XO) or the tert-butyl hydroperoxide (t-BHP) which both increased cell apoptosis. Cell adhesion onto vitronectin (Vn) and fibronectin (Fn) was increased at low concentrations of HX/XO (up to 5 mU/ml) or t-BHP (up to 125 μM) and prevented ROS-induced apoptosis. Flow cytometry analysis of integrin expression showed that the expression of integrin αv and α5 subunits was, respectively, increased and decreased. Cell adhesion inhibition experiments using function-blocking monoclonal antibodies against integrin subunits indicated that αvβ1 and αvβ3 integrins were involved in adhesion of cells to Vn, and αvβ3 integrin played a major role in oxidant-treated cells. For adhesion to Fn, α5β1 and αvβ1 integrins were required for oxidant-treated cells. Taken together, the results suggest that reactive oxygen species (ROS) produced either by HX/XO or t-BHP could affect expression and/or activation of specific integrins in the interaction of EA.hy926 cells with ECM.
Keywords:Reactive oxygen species  apoptosis  endothelial cell adhesion  extracellular matrix  integrins
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