Galectin-1 (GAL-1), a member of a family of conserved β-galactoside–binding proteins, has been shown to induce in vitro apoptosis of activated T cells and immature thymocytes. We assessed the therapeutic effects and mechanisms of action of delivery of GAL-1 in a collagen-induced arthritis model. A single injection of syngeneic DBA/1 fibroblasts engineered to secrete GAL-1 at the day of disease onset was able to abrogate clinical and histopathological manifestations of arthritis. This effect was reproduced by daily administration of recombinant GAL-1. GAL-1 treatment resulted in reduction in anticollagen immunoglobulin (Ig)G levels. The cytokine profile in draining lymph node cells and the anticollagen IgG isotypes in mice sera at the end of the treatment clearly showed inhibition of the proinflammatory response and skewing towards a type 2–polarized immune reaction. Lymph node cells from mice engaged in the gene therapy protocol increased their susceptibility to antigen-induced apoptosis. Moreover, GAL-1–expressing fibroblasts and recombinant GAL-1 revealed a specific dose-dependent inhibitory effect in vitro in antigen-dependent interleukin 2 production to an Aq-restricted, collagen type 2–specific T cell hybridoma clone. Thus, a correlation between the apoptotic properties of GAL-1 in vitro and its immunomodulatory properties in vivo supports its therapeutic potential in the treatment of T helper cell type 1–mediated autoimmune disorders.
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2 August 1999
Article|
August 02 1999
Recombinant Galectin-1 and Its Genetic Delivery Suppress Collagen-Induced Arthritis via T Cell Apoptosis
Gabriel A. Rabinovich,
Gabriel A. Rabinovich
aFrom Immunology, Department of Clinical Biochemistry, Faculty of Chemical Sciences, National University of Córdoba 5000, CC61 Córdoba, Argentina
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Gordon Daly,
Gordon Daly
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
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Hanna Dreja,
Hanna Dreja
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
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Hitakshi Tailor,
Hitakshi Tailor
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
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Clelia M. Riera,
Clelia M. Riera
aFrom Immunology, Department of Clinical Biochemistry, Faculty of Chemical Sciences, National University of Córdoba 5000, CC61 Córdoba, Argentina
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Jun Hirabayashi,
Jun Hirabayashi
cDepartment of Biological Chemistry, Faculty of Pharmaceutical Sciences, Teikyo University, Kanagawa, Japan
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Yuti Chernajovsky
Yuti Chernajovsky
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
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Gabriel A. Rabinovich
aFrom Immunology, Department of Clinical Biochemistry, Faculty of Chemical Sciences, National University of Córdoba 5000, CC61 Córdoba, Argentina
Gordon Daly
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
Hanna Dreja
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
Hitakshi Tailor
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
Clelia M. Riera
aFrom Immunology, Department of Clinical Biochemistry, Faculty of Chemical Sciences, National University of Córdoba 5000, CC61 Córdoba, Argentina
Jun Hirabayashi
cDepartment of Biological Chemistry, Faculty of Pharmaceutical Sciences, Teikyo University, Kanagawa, Japan
Yuti Chernajovsky
bMolecular Biology Laboratory, The Kennedy Institute of Rheumatology, Hammersmith W6 8LH, London, United Kingdom
1used in this paper: CIA, collagen-induced arthritis; CII, collagen type II; GAL-1, galectin-1; mGAL-1, mouse GAL-1; PI, propidium iodide; RA, rheumatoid arthritis; rGAL-1, human recombinant GAL-1; TDG, thiodigalactoside
Gordon Daly and Hanna Dreja contributed equally to this work.
Received:
March 06 1999
Revision Requested:
May 06 1999
Accepted:
June 01 1999
Online ISSN: 1540-9538
Print ISSN: 0022-1007
© 1999 The Rockefeller University Press
1999
The Rockefeller University Press
J Exp Med (1999) 190 (3): 385–398.
Article history
Received:
March 06 1999
Revision Requested:
May 06 1999
Accepted:
June 01 1999
Citation
Gabriel A. Rabinovich, Gordon Daly, Hanna Dreja, Hitakshi Tailor, Clelia M. Riera, Jun Hirabayashi, Yuti Chernajovsky; Recombinant Galectin-1 and Its Genetic Delivery Suppress Collagen-Induced Arthritis via T Cell Apoptosis. J Exp Med 2 August 1999; 190 (3): 385–398. doi: https://doi.org/10.1084/jem.190.3.385
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