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:Inhibition of MC38 colon cancer growth by multicomponent chemoimmunotherapy with anti-IL-10R antibodies, HES-MTX nanoconjugate, depends on application of IL-12, IL-15 or IL-18 secreting dendritic cell vaccines.
Inhibition of MC38 colon cancer growth by multicomponent chemoimmunotherapy with anti-IL-10R antibodies, HES-MTX nanoconjugate, depends on application of IL-12, IL-15 or IL-18 secreting dendritic cell vaccines.
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肿瘤微环境(TME)为肿瘤的生长和存活提供了有利环境。TME中存在的负面因素,如IL-10,可能会限制基于树突状细胞的细胞疫苗的有效性,因此,控制其作用非常重要。IL-10对免疫细胞的影响可以通过例如使用针对该细胞因子受体的抗体——抗IL-10R来消除。此外,细胞疫苗的抗癌活性可以通过将其改造以产生促炎细胞因子(如IL-12、IL-15或IL-18)来增强。另外,免疫调节剂量的甲氨蝶呤和羟乙基淀粉(HES-MTX)纳米偶联物可以刺激效应免疫细胞并消除调节性T细胞,这应能增强基于DC疫苗的免疫疗法的抗肿瘤作用。我们研究的主要目的是确定在抗IL-10R抗体免疫治疗之前给予HES-MTX是否会改变基于过度产生IL-12、IL-15或IL-18的树突状细胞的疫苗效果。
在两种治疗方案中检查了修饰DC的活性——添加抗IL10R抗体的免疫治疗以及使用HES-MTX和抗IL10R抗体的化学免疫治疗。通过分析肿瘤结节中的淋巴和髓系细胞群体以及再刺激脾细胞的活性,确定了肿瘤生长的抑制和疗法诱导特异性抗肿瘤反应的有效性。结果与结论:在基于多次给予抗IL-10R抗体和能够过量产生促炎细胞因子IL-12、IL-15或IL-18的细胞疫苗的免疫治疗之前使用HES-MTX纳米偶联物,为这些疫苗在小鼠结肠癌MC38模型中有效发挥作用创造了最佳条件。所应用的化学免疫治疗在接受DC/IL-15/IL-15Rα/TAg + DC/IL-18/TAg的组中引起了最高水平的肿瘤生长抑制,达到72.4%。细胞疫苗的使用导致免疫治疗或化学免疫治疗中细胞毒性活性均增加。然而,在联合应用过程中接受双组分或三组分疫苗的小鼠中,无论是在肿瘤组织还是脾细胞中,均观察到最大的潜力。因此,所设计的治疗方案在抗癌治疗中可能具有前景。
The tumor microenvironment (TME) provides a conducive environment for the growth and survival of tumors. Negative factors present in TME, such as IL-10, may limit the effectiveness of cellular vaccines based on dendritic cells, therefore, it is important to control its effect. The influence of IL-10 on immune cells can be abolished e.g., by using antibodies against the receptor for this cytokine - anti-IL-10R. Furthermore, the anticancer activity of cellular vaccines can be enhanced by modifying them to produce proinflammatory cytokines, such as IL-12, IL-15 or IL-18. Additionally, an immunomodulatory dose of methotrexate and hydroxyethyl starch (HES-MTX) nanoconjugate may stimulate effector immune cells and eliminate regulatory T cells, which should enhance the antitumor action of immunotherapy based on DC vaccines. The main aim of our study was to determine whether the HES-MTX administered before immunotherapy with anti-IL-10R antibodies would change the effect of vaccines based on dendritic cells overproducing IL-12, IL-15, or IL-18.
The activity of modified DCs was checked in two therapeutic protocols - immunotherapy with the addition of anti-IL10R antibodies and chemoimmunotherapy with HES-MTX and anti-IL10R antibodies. The inhibition of tumor growth and the effectiveness of the therapy in inducing a specific antitumor response were determined by analyzing lymphoid and myeloid cell populations in tumor nodules, and the activity of restimulated splenocytes. RESULTS AND CONCLUSIONS: Using the HES-MTX nanoconjugate before immunotherapy based on multiple administrations of anti-IL-10R antibodies and cellular vaccines capable of overproducing proinflammatory cytokines IL-12, IL-15 or IL-18 created optimal conditions for the effective action of these vaccines in murine colon carcinoma MC38 model. The applied chemoimmunotherapy caused the highest inhibition of tumor growth in the group receiving DC/IL-15/IL-15Rα/TAg + DC/IL-18/TAg at the level of 72.4%. The use of cellular vaccines resulted in cytotoxic activity increase in both immuno- or chemoimmunotherapy. However, the greatest potential was observed both in tumor tissue and splenocytes obtained from mice receiving two- or three-component vaccines in the course of combined application. Thus, the designed treatment schedule may be promising in anticancer therapy.
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