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:Sorafenib plus memory-like natural killer cell immunochemotherapy boosts treatment response in liver cancer.
Sorafenib plus memory-like natural killer cell immunochemotherapy boosts treatment response in liver cancer.
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实验结果表明,联合治疗显著增强了治疗反应,与组织学分析一致地实现了肿瘤生长的显著减少。
肝细胞癌(HCC)的异质性给治疗策略带来重大挑战,因此需要采用联合治疗,以抵消肿瘤微环境的抑制作用并改善结局。本研究利用细胞因子诱导自然杀伤(NK)细胞形成记忆样状态,从而增强其对 HCC 的细胞毒性;并在临床前模型中评估 sorafenib 与新型记忆样 NK 细胞(pNK)免疫化疗联用的潜在获益。
通过肝包膜下植入在 SD 大鼠中建立 HCC 肿瘤。以白细胞介素 12/18 补充 NK 细胞,通过记忆激活增强其细胞毒性。使用 MRI 诊断肿瘤后,将动物随机分入对照组、pNK 免疫治疗组、sorafenib 化疗组或联合治疗组。NK 细胞经胃肠道途径局部递送,sorafenib 则全身给药。连续 3 周每周进行多参数 MRI 扫描以监测治疗应答,之后取肿瘤组织进行组织病理学分析。通过 MRI 和组织病理学数据评估肿瘤结构与功能变化,并采用方差分析(ANOVA)和成对 t 检验进行分析。
细胞植入后先让肿瘤生长 6 天,再开始治疗。基线时肿瘤平均直径为 5.27 mm,各组间无显著差异(p = 0.16)。治疗第一周,与单独免疫治疗相比,sorafenib 单药和联合治疗对肿瘤尺寸的影响更大。至治疗第二周,联合治疗的疗效明显增强,观察到最显著的肿瘤消退(6.05 ± 1.99 mm 对比 13.99 ± 8.01 mm)。组织学分析显示,联合治疗显著提高了肿瘤微环境中的细胞破坏程度(63.79%)。有趣的是,sorafenib 组的存活肿瘤区域比例(38.9%)低于免疫治疗组(45.6%)。值得注意的是,联合治疗组肿瘤微环境中的 NK 细胞比例(34.79%)显著高于其他组(范围 2.21%–26.50%)。尽管两种单药治疗组的肿瘤大小相似,组织学分析显示 pNK 细胞免疫治疗组的应答强于 sorafenib 组。
实验结果表明,联合治疗显著增强治疗应答,并大幅抑制肿瘤生长,这与组织学分析结果一致。
Heterogeneity of hepatocellular carcinoma (HCC) presents significant challenges for therapeutic strategies and necessitates combinatorial treatment approaches to counteract suppressive behavior of tumor microenvironment and achieve improved outcomes. Here, we employed cytokines to induce memory-like behavior in natural killer (NK) cells, thereby enhancing their cytotoxicity against HCC. Additionally, we evaluated the potential benefits of combining sorafenib with this newly developed memory-like NK cell (pNK) immunochemotherapy in a preclinical model.
HCC tumors were grown in SD rats using subcapsular implantation. Interleukin 12/18 cytokines were supplemented to NK cells to enhance cytotoxicity through memory activation. Tumors were diagnosed using MRI, and animals were randomly assigned to control, pNK immunotherapy, sorafenib chemotherapy, or combination therapy groups. NK cells were delivered locally via the gastrointestinal tract, while sorafenib was administered systemically. Therapeutic responses were monitored with weekly multi-parametric MRI scans over three weeks. Afterward, tumor tissues were harvested for histopathological analysis. Structural and functional changes in tumors were evaluated by analyzing MRI and histopathology data using ANOVA and pairwise T-test analyses.
The tumors were allowed to grow for six days post-cell implantation before treatment commenced. At baseline, tumor diameter averaged 5.27 mm without significant difference between groups (p = 0.16). Both sorafenib and combination therapy imposed greater burden on tumor dimensions compared to immunotherapy alone in the first week. By the second week of treatment, combination therapy had markedly expanded its therapeutic efficacy, resulting in the most significant tumor regression observed (6.05 1.99 vs. 13.99 8.01 mm). Histological analysis demonstrated significantly improved cell destruction in the tumor microenvironment associated with combination treatment (63.79%). Interestingly, we observed fewer viable tumor regions in the sorafenib group (38.9%) compared to the immunotherapy group (45.6%). Notably, there was a significantly higher presence of NK cells in the tumor microenvironment with combination therapy (34.79%) compared to other groups (ranging from 2.21 to 26.50%). Although the tumor sizes in the monotherapy groups were similar, histological analysis revealed a stronger response in pNK cell immunotherapy group compared to the sorafenib group.
Experimental results indicated that combination therapy significantly enhanced treatment response, resulting in substantial tumor growth reduction in alignment with histological analysis.
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