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:Natural Product 4-Acetylantroquinonol B Enhances NK Cell-Mediated Immunity Against Glioblastoma.
Natural Product 4-Acetylantroquinonol B Enhances NK Cell-Mediated Immunity Against Glioblastoma.
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胶质母细胞瘤(GBM)尽管经过手术和放化疗仍会迅速复发,并与严重的自然杀伤(NK)细胞功能障碍相关。过继性NK细胞转移已成为GBM一种可行的免疫治疗方法,并正在临床测试中;然而,其疗效受到抑制性肿瘤微环境、NK浸润不足和代谢耗竭的限制。4-乙酰基安曲醌醇B(4-AAQB)是一种从牛樟芝中纯化的泛醌衍生物,已证明具有抗肿瘤和抗炎特性。这些特性提示4-AAQB可能恢复或增强NK细胞对GBM细胞的活性。
因此,我们使用NK细胞细胞毒性试验评估了4-AAQB对NK-92细胞针对人GBM细胞细胞毒性的影响。4-AAQB处理显著增强了NK-92细胞对GBM细胞的细胞毒性,而不影响正常MRC5成纤维细胞。
此外,在GBM异种移植小鼠模型中,4-AAQB和NK-92细胞单独均可抑制肿瘤生长,而两者联合产生了协同抗肿瘤效应,且未诱导肝或肾毒性。对切除肿瘤的bulk RNA测序揭示,联合治疗组中存在独特的差异表达基因,这些基因不与任一单药治疗共享。
值得注意的是,联合治疗上调了参与凋亡细胞清除和NK细胞成熟的免疫效应基因,同时下调了关键生存和耐药通路。此外,通路分析揭示自噬和线粒体自噬受到抑制,提示4-AAQB通过破坏内在生存回路使GBM细胞对免疫介导的凋亡敏感。这些发现支持4-AAQB作为一种口服佐剂,可增强NK细胞免疫疗法对GBM的疗效,并值得进一步开展转化开发。
Glioblastoma (GBM) recurs rapidly despite surgery and radiochemotherapy and is associated with profound natural killer (NK) cell dysfunction. Adoptive NK cell transfer has emerged as a plausible immunotherapy for GBM and is being tested clinically; however, its efficacy is limited by the suppressive tumor microenvironment, low NK infiltration, and metabolic exhaustion.
4-Acetylantroquinonol B (4-AAQB), a ubiquinone derivative purified from Antrodia cinnamomea, has demonstrated antitumor and anti-inflammatory properties. These properties suggest that 4-AAQB may rescue or enhance NK cell activity against GBM cells.
Therefore, we evaluated the effects of 4-AAQB on the cytotoxicity of NK-92 cells against human GBM cells using NK cell cytotoxicity assays. Treatment with 4-AAQB significantly enhanced the cytotoxicity of NK-92 cells against GBM cells, without affecting normal MRC5 fibroblasts.
Additionally, in a GBM xenograft mouse model, 4-AAQB and NK-92 cells individually suppressed tumor growth, whereas their combination produced a synergistic antitumor effect without inducing liver or kidney toxicity. Bulk RNA sequencing of excised tumors revealed distinct differentially expressed genes in the combination group that were not shared with either monotherapy.
Notably, the combined therapy upregulated immune effector genes involved in apoptotic cell clearance and NK cell maturation, while simultaneously downregulating key survival and resistance pathways.
Furthermore, pathway analysis revealed suppression of autophagy and mitophagy, suggesting that 4-AAQB sensitizes GBM cells to immune-mediated apoptosis by disrupting intrinsic survival circuits.
These findings support 4-AAQB as an orally administered adjuvant that enhances NK cell immunotherapy for GBM and warrant further translational development.
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