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:Trichostatin A-modified vaccine provides superior protection against ovarian cancer formation and development.
Trichostatin A-modified vaccine provides superior protection against ovarian cancer formation and development.
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卵巢癌的免疫治疗及肿瘤疫苗的研发已受到更多关注。我们研制了一种经曲古抑菌素A(TSA)修饰的肿瘤疫苗,该疫苗具有强效免疫调节活性,能够抑制大鼠卵巢癌生长并刺激体内免疫细胞应答。将经X射线辐射灭活的TSA处理Nutu-19细胞用作大鼠卵巢癌模型中的肿瘤疫苗。在大鼠中进行了TSA修饰肿瘤疫苗的预防性和治疗性实验。采用流式细胞术和ELISpot实验评估免疫应答。通过免疫组化染色检测脾脏和胸腺中的免疫细胞表达。采用Milliplex Map磁珠面板免疫实验检测GM-CSF、IL-7、IL-17、LIF、LIX、KC、MCP-1、MIP-2、M-CSF、IP-10/CXCL10、MIG/CXCL9、RANTES、IL-4、IFN-γ和VEGF的表达。
在治疗性和预防性模型中,TSA疫苗接种能够有效刺激固有免疫并增强适应性体液免疫和细胞介导的免疫应答,从而抑制卵巢癌的生长和肿瘤发生。该疫苗刺激胸腺进入再激活状态,并增强荷瘤大鼠中的浸润淋巴细胞。疫苗组中关键免疫调节因子的表达上调。与对照组相比,疫苗组中浸润性CD4+和CD8+ T细胞及NK细胞的强度显著增加(P<0.05)。这种保护作用主要依赖于IFN-γ通路,而IL-4通路的作用则小得多。仅接受X射线照射的肿瘤细胞作为对照组仍显示出轻微的免疫效应,表明受照射的细胞也可能引起一定的免疫抗原暴露,但其效果不如TSA修饰的肿瘤疫苗显著。
我们的研究揭示了TSA修饰的肿瘤疫苗作为一种新型肿瘤疫苗在对抗肿瘤耐受性和生长方面的潜在应用。这些发现有助于更好地理解该疫苗对潜在肿瘤发生和进展的免疫调节作用。这种肿瘤疫苗疗法可能增加抗原暴露,协同激活免疫系统,并最终提高缓解率。一种旨在诱导有效肿瘤免疫反应的疫苗策略正被考虑用于癌症免疫治疗。
More attention has been paid to immunotherapy for ovarian cancer and the development of tumor vaccines.
We developed a trichostatin A (TSA)-modified tumor vaccine with potent immunomodulating activities that can inhibit the growth of ovarian cancer in rats and stimulate immune cell response in vivo. TSA-treated Nutu-19 cells inactivated by X-ray radiation were used as a tumor vaccine in rat ovarian cancer models. Prophylactic and therapeutic experiments were performed with TSA-modified tumor vaccine in rats. Flow cytometry and ELISpot assays were conducted to assess immune response. Immune cell expression in the spleen and thymus were detected by immunohistochemical staining. GM-CSF, IL-7, IL-17, LIF, LIX, KC, MCP-1, MIP-2, M-CSF, IP-10/CXCL10, MIG/CXCL9, RANTES, IL-4, IFN-γ, and VEGF expressions were detected with Milliplex Map Magnetic Bead Panel immunoassay.
TSA vaccination in therapeutic and prophylactic models could effectively stimulate innate immunity and boost the adaptive humoral and cell-mediated immune responses to inhibit the growth and tumorigenesis of ovarian cancer. This vaccine stimulated the thymus into reactivating status and enhanced infiltrating lymphocytes in tumor-bearing rats. The expression of key immunoregulatory factors were upregulated in the vaccine group.
The intensities of infiltrating CD4+ and CD8+ T cells and NK cells were significantly increased in the vaccine group compared to the control group (P<0. 05). This protection was mainly dependent on the IFN-γ pathway and, to a much lesser extent, by the IL-4 pathway. The tumor cells only irradiated by X-ray as the control group still showed a slight immune effect, indicating that irradiated cells may also cause certain immune antigen exposure, but the efficacy was not as significant as that of the TSA-modified tumor vaccine.
Our study revealed the potential application of the TSA-modified tumor vaccine as a novel tumor vaccine against tumor refractoriness and growth.
These findings offer a better understanding of the immunomodulatory effects of the vaccine against latent tumorigenesis and progression. This tumor vaccine therapy may increase antigen exposure, synergistically activate the immune system, and ultimately improve remission rates. A vaccine strategy designed to induce effective tumor immune response is being considered for cancer immunotherapy.
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