Selective SIRPα blockade reverses tumor T cell exclusion and overcomes cancer immunotherapy resistance

Vanessa Gauttier(OSE Immunotherapeutics (France)), Sabrina Pengam(OSE Immunotherapeutics (France)), Justine Durand(OSE Immunotherapeutics (France)), Kévin Biteau(OSE Immunotherapeutics (France)), Caroline Mary(OSE Immunotherapeutics (France)), Aurore Morello(OSE Immunotherapeutics (France)), Mélanie Néel(Inserm), Georgia Porto(Inserm), Géraldine Teppaz(OSE Immunotherapeutics (France)), Virginie Thépenier(OSE Immunotherapeutics (France)), Richard Danger(Inserm), Nicolas Vince(Inserm), Emmanuelle Wilhelm(OSE Immunotherapeutics (France)), Isabelle Girault(OSE Immunotherapeutics (France)), Riad Abès(OSE Immunotherapeutics (France)), Catherine Ruiz(OSE Immunotherapeutics (France)), Charlène Trilleaud(Inserm), Kerry L. M. Ralph(Boehringer Ingelheim (Brazil)), E. Sergio Trombetta(Boehringer Ingelheim (Brazil)), Alexandra Garcia(Inserm), Virginie Vignard(Centre National de la Recherche Scientifique), Bernard Martinet(Inserm), Alexandre Glémain(Inserm), Sarah Bruneau(Inserm), Fabienne Haspot(Inserm), Safa Dehmani(Inserm), Pierre Duplouye(Inserm), Masayuki Miyasaka(The University of Osaka), Nathalie Labarrière(Centre National de la Recherche Scientifique), David Laplaud(Inserm), Stéphanie Le Bas‐Bernardet(Inserm), Christophe Blanquart(Centre National de la Recherche Scientifique), Véronique Catros(Inserm), Pierre-Antoine Gouraud(Inserm), Isabelle Archambeaud(Centre Hospitalier Universitaire de Nantes), Hélène Aublé(Centre Hospitalier Universitaire de Nantes), Sylvie Métairie(Centre Hospitalier Universitaire de Nantes), Jean‐François Mosnier(Inserm), D Costantini(OSE Immunotherapeutics (France)), Gilles Blancho(Inserm), Sophie Conchon(Inserm), Bernard Vanhove(OSE Immunotherapeutics (France)), Nicolas Poirier(OSE Immunotherapeutics (France))
Journal of Clinical Investigation
October 18, 2020
Cited by 95Open Access
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Abstract

T cell exclusion causes resistance to cancer immunotherapies via immune checkpoint blockade (ICB). Myeloid cells contribute to resistance by expressing signal regulatory protein-α (SIRPα), an inhibitory membrane receptor that interacts with ubiquitous receptor CD47 to control macrophage phagocytosis in the tumor microenvironment. Although CD47/SIRPα-targeting drugs have been assessed in preclinical models, the therapeutic benefit of selectively blocking SIRPα, and not SIRPγ/CD47, in humans remains unknown. We report a potent synergy between selective SIRPα blockade and ICB in increasing memory T cell responses and reverting exclusion in syngeneic and orthotopic tumor models. Selective SIRPα blockade stimulated tumor nest T cell recruitment by restoring murine and human macrophage chemokine secretion and increased anti-tumor T cell responses by promoting tumor-antigen crosspresentation by dendritic cells. However, nonselective SIRPα/SIRPγ blockade targeting CD47 impaired human T cell activation, proliferation, and endothelial transmigration. Selective SIRPα inhibition opens an attractive avenue to overcoming ICB resistance in patients with elevated myeloid cell infiltration in solid tumors.


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