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:Carbon ion irradiation plus CTLA4 blockade elicits therapeutic immune responses in a murine tumor model.
Carbon ion irradiation plus CTLA4 blockade elicits therapeutic immune responses in a murine tumor model.
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放射治疗可以作为一种原位疫苗,激活患者体内预防性的肿瘤特异性免疫反应。尽管碳离子放疗相比传统光子照射具有更优越的生物物理特性,但这种辐射类型诱导的免疫学效应仍知之甚少。多种将放疗与免疫检查点抑制联合(放射免疫治疗)以增强抗肿瘤免疫的策略已有报道;然而,碳离子放射免疫治疗后肿瘤内免疫细胞组成仍鲜有探索。
我们建立了一种双侧肿瘤模型,基于将小鼠 Her2+ EO771 肿瘤细胞时间错位皮下注射到免疫健全小鼠体内,随后对原发肿瘤进行选择性照射。基于 αCTLA4 而非 αPD-L1 的放射免疫治疗诱导了完全肿瘤排斥,并介导了甚至未照射的远处肿瘤的清除。治愈的小鼠对 EO771 再挑战具有保护作用,表明存在持久的肿瘤特异性免疫记忆。对照射肿瘤的单细胞 RNA 测序和流式细胞术分析揭示了 NK 细胞活化以及具有 TNF 和 IL1 反应基因表达上调的独特肿瘤相关巨噬细胞簇。照射小鼠的远处肿瘤显示出更高的初始 T 细胞频率,这些细胞在与 CTLA4 阻断联合后被激活。
因此,碳离子联合 CTLA4 抑制的放射免疫治疗重塑了肿瘤浸润免疫细胞组成,并可诱导甚至未照射肿瘤的完全排斥。我们的数据表明,将放疗方法与 CTLA4 阻断联合可实现持久的抗肿瘤免疫。对未来放射免疫治疗方法的评估不应仅限于照射部位的免疫学影响,还应考虑对未照射肿瘤的全身免疫学效应。
Radiotherapy can act as an in situ vaccine, activating preventive tumor-specific immune responses in patients. Although carbon ion radiotherapy has superior biophysical properties over conventional photon irradiation, the immunological effects induced by this radiation type are poorly understood.
Multiple strategies combining radiotherapy with immune checkpoint inhibition (radioimmunotherapy) to enhance antitumor immunity have been described; however, immune cell composition in tumors following radioimmunotherapy with carbon ions remains poorly explored.
We developed a bilateral tumor model based on time-shifted subcutaneous injection of murine Her2+ EO771 tumor cells into immune-competent mice followed by selective irradiation of the primary tumor. αCTLA4-, but not αPD-L1-based radioimmunotherapy, induced complete tumor rejection and mediated the eradication of even non-irradiated, distant tumors. Cured mice were protected against the EO771 rechallenge, indicating long-lasting, tumor-specific immunological memory.
Single-cell RNA sequencing and flow cytometric analyses of irradiated tumors revealed activation of NK cells and distinct tumor-associated macrophage clusters with upregulated expression of TNF and IL1 responsive genes. Distant tumors in the irradiated mice showed higher frequencies of naïve T cells activated upon the combination with CTLA4 blockade.
Thus, radioimmunotherapy with carbon ions plus CTLA4 inhibition reshapes the tumor-infiltrating immune cell composition and can induce complete rejection even of non-irradiated tumors.
Our data suggest combining radiotherapy approaches with CTLA4 blockade to achieve durable antitumor immunity. Evaluation of future radioimmunotherapy approaches should not be restricted to immunological impact at the irradiation site but should also consider systemic immunological effects on non-irradiated tumors.
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