An Antibody Targeting ICOS Increases Intratumoral Cytotoxic to Regulatory T-cell Ratio and Induces Tumor Regression

  • Cancer Immunol Res. 2020 Dec;8(12):1568-1582. doi: 10.1158/2326-6066.CIR-20-0034.
Richard C A Sainson  #  1 Anil K Thotakura  #  2 Miha Kosmac  2 Gwenoline Borhis  2 Nahida Parveen  2 Rachael Kimber  2 Joana Carvalho  2 Simon J Henderson  2 Kerstin L Pryke  2 Tracey Okell  2 Siobhan O'Leary  2 Stuart Ball  2 Cassie Van Krinks  2 Lauriane Gamand  2 Emma Taggart  2 Eleanor J Pring  2 Hanif Ali  2 Hannah Craig  2 Vivian W Y Wong  2 Qi Liang  2 Robert J Rowlands  2 Morgane Lecointre  2 Jamie Campbell  2 Ian Kirby  2 David Melvin  2 Volker Germaschewski  2 Elisabeth Oelmann  2 Sonia Quaratino  2 Matthew McCourt  2
Affiliations
  • 1. Kymab Ltd, Babraham Research Campus, Cambridge, United Kingdom. [email protected].
  • 2. Kymab Ltd, Babraham Research Campus, Cambridge, United Kingdom.
  • # Contributed equally.
Abstract

The immunosuppressive tumor microenvironment constitutes a significant hurdle to immune checkpoint inhibitor responses. Both soluble factors and specialized immune cells, such as regulatory T cells (Treg), are key components of active intratumoral immunosuppression. Inducible costimulatory receptor (ICOS) can be highly expressed in the tumor microenvironment, especially on immunosuppressive Treg, suggesting that it represents a relevant target for preferential depletion of these cells. Here, we performed immune profiling of samples from tumor-bearing mice and patients with Cancer to demonstrate differential expression of ICOS in immune T-cell subsets in different tissues. ICOS expression was higher on intratumoral Treg than on effector CD8 T cells. In addition, by immunizing an Icos knockout transgenic mouse line expressing antibodies with human variable domains, we selected a fully human IgG1 antibody called KY1044 that bound ICOS from different species. We showed that KY1044 induced sustained depletion of ICOShigh T cells but was also associated with increased secretion of proinflammatory cytokines from ICOSlow effector T cells (Teff). In syngeneic mouse tumor models, KY1044 depleted ICOShigh Treg and increased the intratumoral TEff:Treg ratio, resulting in increased secretion of IFNγ and TNFα by TEff cells. KY1044 demonstrated monotherapy antitumor efficacy and improved anti-PD-L1 efficacy. In summary, we demonstrated that using KY1044, one can exploit the differential expression of ICOS on T-cell subtypes to improve the intratumoral immune contexture and restore an antitumor immune response.

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