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:TNF-α x FcαRI bi-specific antibody potentiates neutrophil-mediated anti-tumor effects.
TNF-α x FcαRI bi-specific antibody potentiates neutrophil-mediated anti-tumor effects.
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免疫治疗已成为一种有前景的抗癌策略,但许多患者未能获得持久缓解。免疫治疗的低效往往由免疫抑制性肿瘤微环境引起。此前,我们证明了一种FcαRI刺激性双特异性抗体(BsAb)治疗可显著减少小鼠癌症模型中的肿瘤生长,该抗体旨在招募髓系细胞作为细胞毒性效应细胞。
然而,未能实现肿瘤的完全根除。在本研究中,我们探讨了与促炎细胞因子TNF-α联合治疗是否能增强FcαRI BsAb的治疗效果。尽管TNF-α不影响肿瘤细胞的抗体依赖性细胞吞噬作用(ADCP)、巨噬细胞极化或NK 细胞的抗体依赖性细胞毒性(ADCC),但其与FcαRI BsAb联合增加了肿瘤细胞胞吐作用、中性粒细胞脱颗粒和肿瘤细胞死亡。为利用这种协同作用,我们设计了一种TNF-α x FcαRI双特异性免疫细胞因子(FcαRI-TNF)。表面等离子体共振和细胞结合实验表明,FcαRI-TNF对FcαRI、FcɣRIII和肿瘤相关抗原EGFR的结合亲和力与FcαRI BsAb相当。与TNF-α和FcαRI BsAb联合一致,FcαRI-TNF既不影响巨噬细胞功能也不影响其极化,但在体外增强了中性粒细胞介导的肿瘤杀伤。在小鼠MC38-cEGFR肿瘤模型中的活体成像显示,FcαRI-TNF促进了体内中性粒细胞活化和聚集行为。这些发现表明,FcαRI-TNF是改善中性粒细胞驱动的癌症免疫治疗的一个有前景的候选药物。
Immunotherapy has emerged as a promising strategy against cancer, but many patients fail to achieve durable responses. Inefficiency of immunotherapy is often caused by the immunosuppressive tumor microenvironment. Previously, we demonstrated that treatment with an FcαRI-stimulating bi-specific antibody (BsAb), designed to recruit myeloid cells as cytotoxic effector cells, significantly decreased tumor growth in a murine cancer model. Nonetheless, complete tumor eradication was not achieved. In this study, we investigated if co-treatment with the pro-inflammatory cytokine TNF-α enhances the therapeutic efficacy of FcαRI BsAb.
Although TNF-α did not affect antibody-dependent cellular phagocytosis (ADCP) of tumor cells, macrophage polarization, or antibody-dependent cellular cytotoxicity (ADCC) by natural killer cells, its combination with FcαRI BsAb increased tumor cell trogocytosis, neutrophil degranulation and tumor cell death. To exploit this synergy, we engineered a TNF-α x FcαRI bi-specific immunocytokine (FcαRI-TNF).
Surface plasmon resonance and cellular binding assays demonstrated that FcαRI-TNF retained binding affinities for FcαRI, FcɣRIII, and the tumor-associated antigen EGFR comparable to FcαRI BsAb. Consistent with the combination of TNF-α and FcαRI BsAb, FcαRI-TNF neither influenced macrophage function nor polarization but enhanced neutrophil-mediated tumor killing in vitro. Intravital imaging in a murine MC38-cEGFR tumor model showed that FcαRI-TNF promoted in vivo neutrophil activation and swarming behavior.
These findings suggest that FcαRI-TNF represents a promising candidate to improve neutrophil-driven immunotherapy of cancer.
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