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Targeting tumor-associated macrophages with anti-CSF-1R antibody reveals a strategy for cancer therapy.

Carola H Ries ,
Michael A Cannarile ,
Sabine Hoves ,
Jörg Benz ,
Katharina Wartha ,
Valeria Runza ,
Flora Rey-Giraud ,
Leon P Pradel ,
Friedrich Feuerhake ,
Irina Klaman ,
Tobin Jones ,
Ute Jucknischke ,
Stefan Scheiblich ,
Klaus Kaluza ,
Ingo H Gorr ,
Antje Walz ,
Keelara Abiraj ,
Philippe A Cassier ,
Antonio Sica ,
Carlos Gomez-Roca ,
Karin E de Visser ,
Antoine Italiano ,
Christophe Le Tourneau ,
Jean-Pierre Delord ,
Hyam Levitsky ,
Jean-Yves Blay ,
Dominik Rüttinger

Abstract

Macrophage infiltration has been identified as an independent poor prognostic factor in several cancer types. The major survival factor for these macrophages is macrophage colony-stimulating factor 1 (CSF-1). We generated a monoclonal antibody (RG7155) that inhibits CSF-1 receptor (CSF-1R) activation. In vitro RG7155 treatment results in cell death of CSF-1-differentiated macrophages. In animal models, CSF-1R inhibition strongly reduces F4/80(+) tumor-associated macrophages accompanied by an increase of the CD8(+)/CD4(+) T cell ratio. Administration of RG7155 to patients led to striking reductions of CSF-1R(+)CD163(+) macrophages in tumor tissues, which translated into clinical objective responses in diffuse-type giant cell tumor (Dt-GCT) patients.

More about this publication

Cancer cell

Volume 25
Issue nr. 6
Pages 846-59
Publication date 16-06-2014

Full text links

Publisher website (DOI) 10.1016/j.ccr.2014.05.016
Europe PubMed Central 24898549
Pubmed 24898549

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