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Selective targeting of GARP-LTGFβ axis in the tumor microenvironment augments PD-1 blockade via enhancing CD8+ T cell
Anqi Li1,2, Yuzhou Chang2,3, No-Joon Song2
1College of Medicine, The Ohio State University, Columbus, Ohio, USA.
Background:
Immune checkpoint blockade (ICB) has revolutionized cancer immunotherapy. However, most patients with cancer fail to respond clinically. One potential reason is the accumulation of immunosuppressive transforming growth factor β (TGFβ) in the tumor microenvironment (TME). TGFβ drives cancer immune evasion in part by inducing regulatory T cells (Tregs) and limiting CD8+ T cell function. Glycoprotein-A repetitions predominant (GARP) is a cell surface docking receptor for activating latent TGFβ1, TGFβ2 and TGFβ3, with its expression restricted predominantly to effector Tregs, cancer cells, and platelets.
Methods:
We investigated the role of GARP in human patients with cancer by analyzing existing large databases. In addition, we generated and humanized an anti-GARP monoclonal antibody and evaluated its antitumor efficacy and underlying mechanisms of action in murine models of cancer.
Results:
We demonstrate that GARP overexpression in human cancers correlates with a tolerogenic TME and poor clinical response to ICB, suggesting GARP blockade may improve cancer immunotherapy. We report on a unique anti-human GARP antibody (named PIIO-1) that specifically binds the ligand-interacting domain of all latent TGFβ isoforms. PIIO-1 lacks recognition of GARP-TGFβ complex on platelets. Using human LRRC32 (encoding GARP) knock-in mice, we find that PIIO-1 does not cause thrombocytopenia; is preferentially distributed in the TME; and exhibits therapeutic efficacy against GARP+ and GARP- cancers, alone or in combination with anti-PD-1 antibody. Mechanistically, PIIO-1 treatment reduces canonical TGFβ signaling in tumor-infiltrating immune cells, prevents T cell exhaustion, and enhances CD8+ T cell migration into the TME in a C-X-C motif chemokine receptor 3 (CXCR3)-dependent manner.
Conclusion:
GARP contributes to multiple aspects of immune resistance in cancer. Anti-human GARP antibody PIIO-1 is an efficacious and safe strategy to block GARP-mediated LTGFβ activation, enhance CD8+ T cell trafficking and functionality in the tumor, and overcome primary resistance to anti-PD-1 ICB. PIIO-1 therefore warrants clinical development as a novel cancer immunotherapeutic.
Insights
Blocking Glycoprotein-A repetitions predominant (GARP) with antibody PIIO-1 enhances anti-PD-1 immunotherapy by improving CD8+ T cell function and reducing tumor immune evasion. This approach shows promise for overcoming cancer treatment resistance.
Area of Science:
- Immunology
- Oncology
- Cancer Immunotherapy
Background:
- Immune checkpoint blockade (ICB) shows limited clinical response in many cancer patients.
- Tumor microenvironment (TME) immunosuppression, driven by transforming growth factor β (TGFβ), is a key resistance mechanism.
- Glycoprotein-A repetitions predominant (GARP) activates latent TGFβ, contributing to immune evasion.
Purpose of the Study:
- To investigate the role of GARP in human cancers and its impact on ICB response.
- To develop and evaluate an anti-GARP antibody for cancer immunotherapy.
Main Methods:
- Analysis of large patient cancer databases.
- Generation and humanization of an anti-GARP monoclonal antibody (PIIO-1).
- Evaluation of PIIO-1 efficacy and mechanisms in murine cancer models.
Main Results:
- GARP overexpression correlates with a tolerogenic TME and poor ICB response in human cancers.
- Anti-GARP antibody PIIO-1 effectively targets GARP, reduces TGFβ signaling, and enhances CD8+ T cell function in the TME.
- PIIO-1 demonstrates therapeutic efficacy alone and with anti-PD-1, without causing thrombocytopenia.
Conclusions:
- GARP blockade is a viable strategy to enhance cancer immunotherapy.
- The anti-GARP antibody PIIO-1 overcomes resistance to anti-PD-1 ICB by improving T cell trafficking and function.
- PIIO-1 warrants clinical development as a novel cancer immunotherapeutic agent.
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