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Published in: Angiogenesis 1/2021

01-02-2021 | Letter

Characterization of a neutralizing anti-human galectin-1 monoclonal antibody with angioregulatory and immunomodulatory activities

Authors: Juan M. Pérez Sáez, Pablo F. Hockl, Alejando J. Cagnoni, Santiago P. Méndez Huergo, Pablo A. García, Sabrina G. Gatto, Juan P. Cerliani, Diego O. Croci, Gabriel A. Rabinovich

Published in: Angiogenesis | Issue 1/2021

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Abstract

Galectins, a family of highly conserved β-galactoside-binding proteins, control tumor progression by modulating different hallmarks of cancer. Galectin-1 (Gal-1), a proto-type member of this family, plays essential roles in tumor angiogenesis and immunosuppression by cross-linking glycosylated receptors on the surface of endothelial and immune cells. Targeted disruption of Gal-1 suppresses tumor growth by counteracting aberrant angiogenesis and reinforcing antitumor immunity in several experimental settings. Given the multiple therapeutic benefits associated with Gal-1 blockade, several Gal-1 inhibitors, including glycan-based competitors, antagonistic peptides, aptamers and neutralizing monoclonal antibodies, have been designed and evaluated in pre-clinical tumor models. Here we report the biochemical and functional characterization of a newly developed neutralizing anti-human Gal-1 monoclonal antibody (Gal-1-mAb3), which specifically recognizes a unique epitope in Gal-1 protein and exerts both angioregulatory and immunomodulatory activities. Blockade of Gal-1 function using Gal-1-mAb3, might be relevant not only in cancer but also in other pathologic conditions characterized by aberrant angiogenesis and uncontrolled immunosuppression.
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Metadata
Title
Characterization of a neutralizing anti-human galectin-1 monoclonal antibody with angioregulatory and immunomodulatory activities
Authors
Juan M. Pérez Sáez
Pablo F. Hockl
Alejando J. Cagnoni
Santiago P. Méndez Huergo
Pablo A. García
Sabrina G. Gatto
Juan P. Cerliani
Diego O. Croci
Gabriel A. Rabinovich
Publication date
01-02-2021
Publisher
Springer Netherlands
Published in
Angiogenesis / Issue 1/2021
Print ISSN: 0969-6970
Electronic ISSN: 1573-7209
DOI
https://doi.org/10.1007/s10456-020-09749-3

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