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:AWT020: a novel fusion protein harnessing PD-1 blockade and selective IL-2 Cis-activation for enhanced anti-tumor immunity and diminished toxicity.
AWT020: a novel fusion protein harnessing PD-1 blockade and selective IL-2 Cis-activation for enhanced anti-tumor immunity and diminished toxicity.
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AWT020 融合蛋白通过整合 PD-1 阻断与 IL-2 信号传导,提供了一种有前景的新型免疫治疗策略,赋予增强的抗肿瘤活性并降低毒性。
靶向程序性细胞死亡蛋白1(PD-1)的免疫检查点抑制剂(ICI)在临床上的成功彻底改变了癌症治疗。然而,PD-1阻断疗法的全部潜力仍未实现,因为在许多癌症类型中缓解率仍然很低。基于白细胞介素-2(IL-2)的免疫疗法前景广阔,因为它们能够刺激强效的T细胞扩增并增强效应功能——这些活性可与PD-1阻断产生强效协同作用。然而,IL-2疗法也存在一个显著缺陷:它们可引发严重的全身毒性,并通过扩增调节性T细胞诱导免疫抑制。
为了克服PD-1阻断和IL-2疗法的挑战,同时提高安全性和疗效,我们设计了一种新型融合蛋白AWT020,将人源化抗PD-1纳米抗体与工程化IL-2突变体(IL-2c)相结合。AWT020的IL-2c组分经过工程化改造,使其不与IL-2受体α(IL-2Rα)亚基结合,并降低了对IL-2受体β和γ(IL-2Rβγ)复合物的亲和力,旨在减少全身性免疫细胞激活,从而减轻IL-2疗法常伴随的严重毒性。AWT020的抗PD-1抗体部分具有双重作用:它将IL-2c载荷精确递送至肿瘤浸润T细胞,同时阻断PD-1通路介导的免疫抑制信号。
AWT020在表达PD-1的细胞中显示出显著增强的pSTAT5信号传导,并促进活化T细胞的增殖,其作用优于自然杀伤(NK)细胞。在使用抗PD-1敏感和耐药小鼠肿瘤模型的临床前研究中,AWT020的小鼠替代物(mAWT020)与抗PD-1抗体、IL-2或抗PD-1抗体与IL-2的联合治疗相比,表现出显著增强的抗肿瘤疗效。此外,mAWT020治疗耐受性良好,毒性迹象极少。免疫分析显示,mAWT020优先扩增肿瘤内的CD8+ T细胞,而不影响外周T细胞和NK细胞。值得注意的是,这种选择性的肿瘤内T细胞刺激能够产生强效的肿瘤特异性T细胞反应,突显了该分子增强的疗效和安全性。
The clinical success of the immune checkpoint inhibitor (ICI) targeting programmed cell death protein 1 (PD-1) has revolutionized cancer treatment. However, the full potential of PD-1 blockade therapy remains unrealized, as response rates are still low across many cancer types. Interleukin-2 (IL-2)-based immunotherapies hold promise, as they can stimulate robust T cell expansion and enhance effector function - activities that could synergize potently with PD-1 blockade. Yet, IL-2 therapies also carry a significant drawback: they can trigger severe systemic toxicities and induce immune suppression by expanding regulatory T cells.
To overcome the challenges of PD-1 blockade and IL-2 therapies while enhancing safety and efficacy, we have engineered a novel fusion protein, AWT020, combining a humanized anti-PD-1 nanobody and an engineered IL-2 mutein (IL-2c). The IL-2c component of AWT020 has been engineered to exhibit no binding to the IL-2 receptor alpha (IL-2Rα) subunit and attenuated affinity for the IL-2 receptor beta and gamma (IL-2Rβγ) complex, aiming to reduce systemic immune cell activation, thereby mitigating the severe toxicity often associated with IL-2 therapies. The anti-PD-1 antibody portion of AWT020 serves a dual purpose: it precisely delivers the IL-2c payload to tumor-infiltrating T cells while blocking the immune-inhibitory signals mediated by the PD-1 pathway.
AWT020 showed significantly enhanced pSTAT5 signaling in PD-1 expressing cells and promoted the proliferation of activated T cells over natural killer (NK) cells. In preclinical studies using both anti-PD-1-sensitive and -resistant mouse tumor models, the mouse surrogate of AWT020 (mAWT020) demonstrated markedly enhanced anti-tumor efficacy compared to an anti-PD-1 antibody, IL-2, or the combination of an anti-PD-1 antibody and IL-2. In addition, the mAWT020 treatment was well-tolerated, with minimal signs of toxicity. Immune profiling revealed that mAWT020 preferentially expands CD8 + T cells within tumors, sparing peripheral T and NK cells. Notably, this selective tumoral T-cell stimulation enables potent tumor-specific T-cell responses, underscoring the molecule's enhanced efficacy and safety.
The AWT020 fusion protein offers a promising novel immunotherapeutic strategy by integrating PD-1 blockade and IL-2 signaling, conferring enhanced anti-tumor activity with reduced toxicity.
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