RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:An Engineered IL15 Cytokine Mutein Fused to an Anti-PD1 Improves Intratumoral T-cell Function and Antitumor Immunity.
An Engineered IL15 Cytokine Mutein Fused to an Anti-PD1 Improves Intratumoral T-cell Function and Antitumor Immunity.
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细胞因子免疫疗法具有临床疗效,但常因免疫激活过度且波及全身而伴随严重不良事件。本研究通过工程化设计,将单一、效力减弱的IL-15突变体与PD-1特异性抗体融合,构建融合蛋白anti-PD1-IL15m,以应对这一难题。该免疫细胞因子旨在通过PD-1介导的亲合力效应,刺激PD-1阳性TIL(肿瘤浸润淋巴细胞)上的IL-2/15受体,同时尽量减少对外周循环NK细胞和T细胞的影响。在B16和MC38同系肿瘤小鼠模型中,使用可与小鼠交叉反应的融合蛋白anti-mPD1-IL15m治疗,显示出强效抗肿瘤活性,且未加剧体重下降。在B16黑色素瘤模型中,anti-mPD1-IL15m疗效优于IL-15超激动剂、抗PD-1抗体以及二者联合。机制研究显示,anti-PD1-IL15m优先靶向CD8+ TIL;单细胞RNA测序发现,该治疗诱导了一类具有高增殖能力和效应样特征的耗竭CD8+ TIL亚群扩增。anti-mPD1-IL15m的抗肿瘤作用依赖CD8+ T细胞:清除CD8+细胞会使疗效消失,而清除NK细胞对疗效影响很小。研究还评估了anti-hPD1-IL15m对癌症患者原代TIL的作用。体外实验中,该药物显著增强人原发肿瘤来源CD8+和CD4+ TIL的增殖、活化和细胞毒性,而对肿瘤来源调节性T细胞影响甚微。
综上,anti-PD1-IL15m通过靶向PD-1阳性TIL,在提高IL-15癌症免疫疗法疗效和安全性方面显示出良好的转化应用前景。相关专题评论见Felices和Miller,第1110页。
The use of cytokines for immunotherapy shows clinical efficacy but is frequently accompanied by severe adverse events caused by excessive and systemic immune activation.
Here, we set out to address these challenges by engineering a fusion protein of a single, potency-reduced, IL15 mutein and a PD1-specific antibody (anti-PD1-IL15m). This immunocytokine was designed to deliver PD1-mediated, avidity-driven IL2/15 receptor stimulation to PD1 + tumor-infiltrating lymphocytes (TIL) while minimally affecting circulating peripheral natural killer (NK) cells and T cells.
Treatment of tumor-bearing mice with a mouse cross-reactive fusion, anti-mPD1-IL15m, demonstrated potent antitumor efficacy without exacerbating body weight loss in B16 and MC38 syngeneic tumor models.
Moreover, anti-mPD1-IL15m was more efficacious than an IL15 superagonist, an anti-mPD-1, or the combination thereof in the B16 melanoma model.
Mechanistically, anti-PD1-IL15m preferentially targeted CD8 + TILs and single-cell RNA-sequencing analyses revealed that anti-mPD1-IL15m treatment induced the expansion of an exhausted CD8 + TIL cluster with high proliferative capacity and effector-like signatures. Antitumor efficacy of anti-mPD1-IL15m was dependent on CD8 + T cells, as depletion of CD8 + cells resulted in the loss of antitumor activity, whereas depletion of NK cells had little impact on efficacy.
The impact of anti-hPD1-IL15m on primary human TILs from patients with cancer was also evaluated. Anti-hPD1-IL15m robustly enhanced the proliferation, activation, and cytotoxicity of CD8 + and CD4 + TILs from human primary cancers in vitro , whereas tumor-derived regulatory T cells were largely unaffected. Taken together, our findings showed that anti-PD1-IL15m exhibits a high translational promise with improved efficacy and safety of IL15 for cancer immunotherapy via targeting PD1 + TILs. See related Spotlight by Felices and Miller, p. 1110 .
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