Phosphodiesterase-5 inhibition collaborates with vaccine-based immunotherapy to reprogram myeloid cells in pancreatic ductal adenocarcinoma.

IF 6.3 1区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Nicole E Gross, Zhehao Zhang, Jacob T Mitchell, Soren Charmsaz, Alexei G Hernandez, Erin M Coyne, Sarah M Shin, Diana Carolina Vargas Carvajal, Dimitrios N Sidiropoulos, Yeonju Cho, Guanglan Mo, Xuan Yuan, Courtney Cannon, Jayalaxmi Suresh Babu, Melissa R Lyman, Todd Armstrong, Luciane T Kagohara, Katherine M Bever, Dung T Le, Elizabeth M Jaffee, Elana J Fertig, Won Jin Ho
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Abstract

Pancreatic ductal adenocarcinoma (PDAC) is highly lethal and resistant to immunotherapy. Although immune recognition can be enhanced with immunomodulatory agents including checkpoint inhibitors and vaccines, few patients experience clinical efficacy because the tumor immune microenvironment (TiME) is dominated by immunosuppressive myeloid cells that impose T cell inhibition. Inhibition of phosphodiesterase-5 (PDE5) was reported to downregulate metabolic regulators arginase and inducible NOS in immunosuppressive myeloid cells and enhance immunity against immune-sensitive tumors, including head and neck cancers. We show for the first time to our knowledge that combining a PDE5 inhibitor, tadalafil, with a mesothelin-specific vaccine, anti-programmed cell death protein 1, and anti-cytotoxic T lymphocyte-associated protein 4 yields antitumor efficacy even against immune-resistant PDAC. To determine immunologic advantages conferred by tadalafil, we profiled the TiME using mass cytometry and single-cell RNA-sequencing analysis with Domino to infer intercellular signaling. Our analyses demonstrated that tadalafil reprograms myeloid cells to be less immunosuppressive. Moreover, tadalafil synergized with the vaccine, enhancing T cell activation including mesothelin-specific T cells. Tadalafil treatment was also associated with myeloid/T cell signaling axes important for antitumor responses (e.g., Cxcr3, Il12). Our study shows that PDE5 inhibition combined with vaccine-based immunotherapy promotes pro-inflammatory states of myeloid cells, activation of T cells, and enhanced myeloid/T cell crosstalk to yield antitumor efficacy against immune-resistant PDAC.

磷酸二酯酶-5抑制剂与基于疫苗的免疫疗法合作,对胰腺导管腺癌的髓样细胞进行重编程。
胰腺导管腺癌(PDAC)的致死率很高,而且对免疫疗法具有抗药性。虽然包括检查点抑制剂和疫苗在内的免疫调节药物可以增强免疫识别能力,但由于肿瘤免疫微环境(TiME)由免疫抑制性髓系细胞主导,对T细胞产生抑制作用,因此临床疗效不佳的患者寥寥无几。据报道,抑制磷酸二酯酶-5(PDE5)可下调免疫抑制性髓系细胞中的代谢调节因子精氨酸酶和iNOS,增强对包括头颈部癌症在内的免疫敏感性肿瘤的免疫力。我们首次发现,将PDE5抑制剂他达拉非与间皮素特异性疫苗、抗PD1和抗CTLA4结合使用,即使对免疫耐受的PDAC也能产生抗肿瘤疗效。为了确定他达拉非带来的免疫优势,我们使用质谱细胞计数法和 Domino 单细胞 RNA 分析法对 TiME 进行了分析,以推断细胞间信号转导。我们的分析表明,他达拉非能重编程髓系细胞,降低其免疫抑制性。此外,他达拉非与疫苗协同作用,增强了T细胞的活化,包括间皮素特异性T细胞。他达拉非治疗还与对抗肿瘤反应很重要的骨髓-T细胞信号轴(如Cxcr3、Il12)有关。我们的研究表明,PDE5抑制与基于疫苗的免疫疗法相结合可促进髓系细胞的促炎状态、T细胞的活化以及髓系-T细胞串联的增强,从而对免疫耐受的PDAC产生抗肿瘤疗效。
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来源期刊
JCI insight
JCI insight Medicine-General Medicine
CiteScore
13.70
自引率
1.20%
发文量
543
审稿时长
6 weeks
期刊介绍: JCI Insight is a Gold Open Access journal with a 2022 Impact Factor of 8.0. It publishes high-quality studies in various biomedical specialties, such as autoimmunity, gastroenterology, immunology, metabolism, nephrology, neuroscience, oncology, pulmonology, and vascular biology. The journal focuses on clinically relevant basic and translational research that contributes to the understanding of disease biology and treatment. JCI Insight is self-published by the American Society for Clinical Investigation (ASCI), a nonprofit honor organization of physician-scientists founded in 1908, and it helps fulfill the ASCI's mission to advance medical science through the publication of clinically relevant research reports.
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