BACKGROUND: Antibody-mediated targeting of regulatory T cell receptors such as CTLA-4 enhances antitumor immune responses against several cancer entities including malignant melanoma. Yet, therapeutic success in patients remains variable underscoring the need for novel combinatorial approaches. METHODS: Here we established a vaccination strategy that combines engagement of the nucleic acid-sensing pattern recognition receptor RIG-I, antigen and CTLA-4 blockade. We used in vitro transcribed 5'-triphosphorylated RNA (3pRNA) to therapeutically target the RIG-I pathway. We performed in vitro functional analysis in bone-marrow derived dendritic cells and investigated RIG-I-enhanced vaccines in different murine melanoma models. FINDINGS: We found that protein vaccination together with RIG-I ligation via 3pRNA strongly synergizes with CTLA-4 blockade to induce expansion and activation of antigen-specific CD8(+) T cells that translates into potent antitumor immunity. RIG-I-induced cross-priming of cytotoxic T cells as well as antitumor immunity were dependent on the host adapter protein MAVS and type I interferon (IFN-I) signaling and were mediated by dendritic cells. INTERPRETATION: Overall, our data demonstrate the potency of a novel combinatorial vaccination strategy combining RIG-I-driven immunization with CTLA-4 blockade to prevent and treat experimental melanoma. FUND: German Research Foundation (SFB 1335, SFB 1371), EMBO, Else Kröner-Fresenius-Foundation, German Cancer Aid, European Hematology Association, DKMS Foundation for Giving Life, Dres. Carl Maximilian and Carl Manfred Bayer-Foundation.
RIG-I activating immunostimulatory RNA boosts the efficacy of anticancer vaccines and synergizes with immune checkpoint blockade.
RIG-I 激活免疫刺激 RNA 可增强抗癌疫苗的疗效,并与免疫检查点阻断产生协同作用
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作者:Heidegger Simon, Kreppel Diana, Bscheider Michael, Stritzke Florian, Nedelko Tatiana, Wintges Alexander, Bek Sarah, Fischer Julius C, Graalmann Theresa, Kalinke Ulrich, Bassermann Florian, Haas Tobias, Poeck Hendrik
| 期刊: | EBioMedicine | 影响因子: | 10.800 |
| 时间: | 2019 | 起止号: | 2019 Mar;41:146-155 |
| doi: | 10.1016/j.ebiom.2019.02.056 | 研究方向: | 肿瘤 |
| 信号通路: | Checkpoint | ||
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