Arginase 1–Based Immune Modulatory Vaccines Induce Anticancer Immunity and Synergize with Anti–PD-1 Checkpoint Blockade

封锁 癌症研究 免疫系统 免疫 免疫疗法 免疫检查点 精氨酸酶 癌症免疫疗法 免疫学 医学 生物 受体 精氨酸 内科学 生物化学 氨基酸
作者
Mia Aaboe Jørgensen,Stefano Ugel,Mie Linder Hübbe,Marco Carretta,Maria Perez-Penco,Stine Emilie Weis-Banke,Evelina Martinenaite,Katharina Kopp,Marion Chapellier,Annalisa Adamo,Francesco De Sanctis,Cristina Frusteri,Manuela Iezzi,Mai-Britt Zocca,Daniel H. Madsen,Ayako Wakatsuki Pedersen,Vincenzo Bronte,Mads Hald Andersen
出处
期刊:Cancer immunology research [American Association for Cancer Research]
卷期号:9 (11): 1316-1326 被引量:55
标识
DOI:10.1158/2326-6066.cir-21-0280
摘要

Abstract Expression of the L-arginine catabolizing enzyme arginase 1 (ARG1) is a central immunosuppressive mechanism mediated by tumor-educated myeloid cells. Increased activity of ARG1 promotes the formation of an immunosuppressive microenvironment and leads to a more aggressive phenotype in many cancers. Intrinsic T-cell immunity against ARG1-derived epitopes in the peripheral blood of cancer patients and healthy subjects has previously been demonstrated. To evaluate the antitumor efficacy of ARG1-derived peptide vaccines as a monotherapy and as a combinational therapy with checkpoint blockade, different in vivo syngeneic mouse tumor models were utilized. To evaluate the antitumor effects, flow cytometry analysis and IHC were performed on tumors, and ELISPOT assays were performed to characterize immune responses. We show that ARG1-targeting therapeutic vaccines were able to activate endogenous antitumor immunity in several in vivo syngeneic mouse tumor models and to modulate the cell composition of the tumor microenvironment without causing any associated side effects or systemic toxicity. ARG1-targeting vaccines in combination with anti–PD-1 also resulted in increased T-cell infiltration, decreased ARG1 expression, reduced suppressive function of tumor-educated myeloid cells, and a shift in the M1/M2 ratio of tumor-infiltrating macrophages. These results indicated that the induced shift toward a more proinflammatory microenvironment by ARG1-targeting immunotherapy favors effective tumor control when combined with anti–PD-1 checkpoint blockade. Our data illustrate the ability of ARG1-based immune modulatory vaccination to elicit antigen-specific immunosurveillance and imply the feasibility of this novel immunotherapeutic approach for clinical translation.
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