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阻断 EP4 下调肿瘤代谢并与抗 PD-1 治疗协同激活肺腺癌模型中的 NK 细胞

英文原题:Blocking EP4 down-regulates tumor metabolism and synergizes with anti-PD-1 therapy to activate natural killer cells in a lung adenocarcinoma model.

查看英文原题

Blocking EP4 down-regulates tumor metabolism and synergizes with anti-PD-1 therapy to activate natural killer cells in a lung adenocarcinoma model.

PubMed 2022/06/04(内容时间) Int Immunol Q3 · IF 3.4(JCR 2025)

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中文摘要

前列腺素E2(PGE2)是环氧合酶(COX)通路的产物,由肿瘤及周围基质细胞产生。它会刺激肿瘤进展、促进血管生成并抑制抗肿瘤应答。药理学抑制PGE2合成已被证明可在体内抑制肿瘤起始和生长。

本研究显示,Ptgs2缺陷型3LL肺腺癌细胞系在体内的生长下调,这与自然杀伤(NK)细胞活化以及多形核白细胞髓源性抑制细胞(PMN-MDSC)和肿瘤相关巨噬细胞(TAM)数量减少有关。基于这些结果,我们评估EP4(PGE2受体)抑制剂ONO-AE3-208(EP4i)联合抗PD-1抗体的治疗效果。EP4i可降低肿瘤代谢,包括糖酵解、脂肪酸氧化和氧化磷酸化,而抗PD-1抗体单用则不能。EP4i仅诱导NK细胞(而非T细胞)产生IFN,并使TAM从M2样向M1样巨噬细胞转变。抗PD-1抗体治疗可进一步增强这些效应。尽管CD8 T细胞浸润增加,即使联合治疗也未显著改变IFN产生。EP4i或抗PD-1抗体单独治疗均可改善肿瘤缺氧,联合治疗进一步影响这一指标。只有联合治疗显著使肿瘤血管正常化。

结果表明,EP4i可重编程肿瘤代谢,并揭示EP4i的独特特性:它可与抗PD-1抗体协同,促进NK细胞产生IFN、使TAM向M1表型极化,并通过肿瘤血管正常化减轻缺氧。

展开英文摘要原文

Prostaglandin E2 (PGE2), a product of the cyclooxygenase (COX) pathway, is produced by tumors and surrounding stromal cells. It stimulates tumor progression, promotes angiogenesis and suppresses the anti-tumor response. Pharmacological inhibition of PGE2 synthesis has been shown to suppress tumor initiation and growth in vivo. In the current study, we demonstrated that the growth of the Ptgs2-deficient 3LL lung adenocarcinoma cell line was down-regulated in vivo through natural killer (NK) cell activation and a reduction in the population of polymorphonuclear leukocyte-myeloid-derived suppressor cells (PMN-MDSCs) and tumor-associated macrophages (TAMs). On the basis of these results, the therapeutic effect of ONO-AE3-208 (EP4i), an inhibitor of EP4 (a PGE2 receptor), combined with anti-PD-1 antibody was evaluated. EP4i, but not anti-PD-1 antibody, decreased tumor metabolism including glycolysis, fatty acid oxidation and oxidative phosphorylation.

EP4i induced IFN production from only NK cells (not from T cells) and a shift from M2-like to M1-like macrophages in TAMs. These effects were further enhanced by anti-PD-1 antibody treatment. Although CD8 T-cell infiltration was increased, IFN production was not significantly altered, even with combination therapy. Tumor hypoxia was ameliorated by either EP4i or anti-PD-1 antibody treatment, which was further affected by the combination.

Normalization of tumor vessels was significant only for the combination therapy. The results indicated a novel effect of EP4i for the metabolic reprogramming of tumors and revealed unique features of EP4i that can synergize with anti-PD-1 antibody to promote IFN production by NK cells, polarize TAMs into the M1 phenotype, and reduce hypoxia through normalization of the tumor vasculature.

论文信息

作者
Tokumasu M、Nishida M、Kawaguchi T、Kudo I、Kotani T、Takeda K、Yoshida T、Udono H
单位
Department of Immunology, Okayama University Graduate School of Medicine, Dentistry, and Pharmaceutical Sciences, 2-5-1 Shikata-cho, Kita-ku, Okayama 700-8558, Japan.Japan
文献类型
非美国政府资助研究
期刊
International immunology2022 Jun 4
原文标识
PubMed 35137101 · DOI 10.1093/intimm/dxac004