Access the full text.
Sign up today, get DeepDyve free for 14 days.
P. Defilippi, G. Truffa, G. Stefanuto, F. Altruda, L. Silengo, G. Tarone (1991)
Tumor necrosis factor alpha and interferon gamma modulate the expression of the vitronectin receptor (integrin beta 3) in human endothelial cells.The Journal of biological chemistry, 266 12
A. Albini, G. Allavena, A. Melchiori, F. Giancotti, H. Richter, P. Comoglio, S. Parodi, G. Martin, G. Tarone (1987)
Chemotaxis of 3T3 and SV3T3 cells to fibronectin is mediated through the cell-attachment site in fibronectin and a fibronectin cell surface receptorThe Journal of Cell Biology, 105
A. Mallat, A. Preaux, S. Blazejewski, J. Rosenbaum, D. Dhumeaux, P. Mavier (1995)
Interferon alfa and gamma inhibit proliferation and collagen synthesis of human ito cells in cultureHepatology, 21
T. Torimura, T. Ueno, M. Kin, S. Inuzuka, H. Sugawara, S. Tamaki, R. Tsuji, K. Sujaku, M. Sata, K. Tanikawa (1997)
Coordinated expression of integrin α6β1 and laminin in hepatocellular carcinomaHuman Pathology, 28
B. Bail, S. Faouzi, L. Boussarie, C. Balabaud, P. Bioulac-Sage, J. Rosenbaum (1997)
Extracellular matrix composition and integrin expression in early hepatocarcinogenesis in human cirrhotic liverThe Journal of Pathology, 181
N. Arabegum (1995)
Differential display and integrin alpha 6 messenger RNA overexpression in hepatocellular carcinoma*1, *2Hepatology, 22
S. Friedman (1993)
The Cellular Basis of Hepatic Fibrosis -- Mechanisms and Treatment StrategiesThe New England Journal of Medicine, 328
J. Scoazec, Jean-françois Flejou, Antonia D'errico, Michelangelo Fiorentino, Alessandra Zamparelli, A. Bringuier, Gérard Feldmann, W. Grigioni (1996)
Fibrolamellar carcinoma of the liver: Composition of the extracellular matrix and expression of cell‐matrix and cell‐cell adhesion moleculesHepatology, 24
P. Defilippi, G. Truffa, G. Stefanuto, F. Altruda, L. Silengo, G. Tarone (1991)
Tumor necrosis factor α and interferon γ modulate the expression of the vitronectin receptor (integrin β3) in human endothelial cells, 26
S. Ogasawara, H. Yano, A. Iemura, T. Hisaka, M. Kojiro (1996)
Expressions of basic fibroblast growth factor and its receptors and their relationship to proliferation of human hepatocellular carcinoma cell linesHepatology, 24
Detlef Schuppan (1990)
Structure of the Extracellular Matrix in Normal and Fibrotic Liver: Collagens and GlycoproteinsSeminars in Liver Disease, 10
B. Knowles, C. Howe, D. Aden (1980)
Human hepatocellular carcinoma cell lines secrete the major plasma proteins and hepatitis B surface antigen.Science, 209 4455
N. Kawakami-Kimura, T. Narita, K. Ohmori, T. Yoneda, K. Matsumoto, T. Nakamura, R. Kannagi (1997)
Involvement of hepatocyte growth factor in increased integrin expression on HepG2 cells triggered by adhesion to endothelial cells.British Journal of Cancer, 75
I. Ozaki, K. Yamamoto, T. Mizuta, S. Kajihara, N. Fukushima, Y. Setoguchi, F. Morito, T. Sakai (1998)
Differential expression of laminin receptors in human hepatocellular carcinomaGut, 43
J.‐Y. Scoazec, J.‐F. Fléjou, A. D'Errico, A.‐F. Bringuier, M. Fiorentino, A. Zamparelli, G. Feldmann, W.F. Grigioni (1996)
Fibrolamellar carcinoma of the liver: composition of the extracellular matrix and expression of cell adhesion molecules, 24
Akihide Masumoto, S. Arao, Makoto Otsuki (1999)
Role of β1 integrins in adhesion and invasion of hepatocellular carcinoma cellsHepatology, 29
R. Ignotz, J. Massagué (1987)
Cell adhesion protein receptors as targets for transforming growth factor-β actionCell, 51
K. Takenaka, K. Yamamoto, A. Taketomi, H. Itasaka, E. Adachi, K. Shirabe, T. Nishizaki, K. Yanaga, K. Sugimachi (1995)
A comparison of the surgical results in patients with hepatitis B versus hepatitis C‐related hepatocellular carcinomaHepatology, 22
N. Begum, M. Mori, T. Matsumata, K. Takenaka, K. Sugimachi, G. Barnard (1995)
Differential display and integrin alpha 6 messenger RNA overexpression in hepatocellular carcinomaHepatology, 22
D. Kvale, P. Brandtzaeg (1993)
Immune modulation of adhesion molecules ICAM-1 (CD54) and LFA-3 (CD58) in human hepatocytic cell lines.Journal of hepatology, 17 3
R. Volpes, J. Oord, V. Desmet (1993)
Integrins as differential cell lineage markers of primary liver tumors.The American journal of pathology, 142 5
S. Dedhar (1989)
Regulation of expression of the cell adhesion receptors, integrins, by recombinant human interleukin‐1β in human osteosarcoma cells: Inhibition of cell proliferation and stimulation of alkaline phosphatase activityJournal of Cellular Physiology, 138
V. Carloni, R. Romanelli, A. Mercurio, M. Pinzani, G. Laffi, Giorgio Cotrozzi, P. Gentilini (1998)
Knockout of α6β1-integrin expression reverses the transformed phenotype of hepatocarcinoma cellsGastroenterology, 115
J. Heino, R. Ignotz, M. Hemler, C. Crouse, J. Massagué (1989)
Regulation of cell adhesion receptors by transforming growth factor-beta. Concomitant regulation of integrins that share a common beta 1 subunit.The Journal of biological chemistry, 264 1
J. Scoazec (1995)
Expression of cell-matrix adhesion molecules in the liver and their modulation during fibrosis.Journal of hepatology, 22 2 Suppl
A. Mallat, A.‐M. Préaux, S. Blazejewski, J. Rosenbaum, D. Dhumeaux, P. Mavier (1995)
Interferon α and γ inhibit proliferation and collagen synthesis of human Ito cells in culture, 21
E. Friedman (1993)
Book Review Ethical Problems in Dialysis and Transplantation (Developments in Nephrology. Vol. 33.) Edited by Carl M. Kjellstrand and John B. Dossetor. 235 pp., illustrated. Boston, Kluwer Academic, 1992. $108.50. 0-7923-1625-8The New England Journal of Medicine, 328
Liver carcinogenesis is associated with striking changes in the integrin repertoire of hepatocytes, including the overexpression of the laminin and collagen receptors α1β1 and the de novo induction of the laminin receptor α6β1. Our aim was to analyze the role of pro‐inflammatory cytokines, interferons and fibrogenic cytokines TGF‐β and FGF2 in the regulation of the expression of β1 integrins by neoplastic hepatocytes. The 2 human hepatocellular cell lines HepG2 and Hep3B were used as models. Integrin expression was assessed by qualitative methods (immunocytochemistry, Western blotting) and semi‐quantitative techniques (FACS, cellular ELISA), before and after stimulation by TNFα, IL1‐β, TGF‐β, FGF2, interferon γ and interferon α‐2b. HepG2 and Hep3B constitutively expressed α1, α2, α6 and β1 chains. A 24 to 48‐hr stimulation with pro‐inflammatory cytokines, TGF‐β and FGF2 induced a significant increase in the concentrations of all integrin chains. The maximum induction was registered for β1 chain, which presented increases amounting up to 3, 4 and 7 times the control values in the presence of, respectively, TNF α/IL1‐β, TGF‐β and FGF2. Interferons had no direct effect on integrin expression and partially antagonized the effects of TNF α and TGF‐β. The increased concentrations of integrin chains were associated with an increased membrane expression of the corresponding dimers and with an increased adhesion of stimulated hepatocytes to laminin, which was antagonized by neutralizing anti‐β1 and anti‐α6 antibodies. Finally, anti‐α6 antibody inhibited the migration of HepG2 and Hep3B cells in reconstituted basement membrane. Our results suggest that the stimulation of α6β1 integrin expression in hepatocarcinoma cells is essential for cell adhesion and migration. Int. J. Cancer, 83:518‐525, 1999. © 1999 Wiley‐Liss, Inc.
International Journal of Cancer – Wiley
Published: Jan 12, 1999
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.