CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:T Cell Features in Glioblastoma May Guide Therapeutic Strategies to Overcome Microenvironment Immunosuppression.
T Cell Features in Glioblastoma May Guide Therapeutic Strategies to Overcome Microenvironment Immunosuppression.
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胶质母细胞瘤(GBM)是最具侵袭性和致死性的原发性脑肿瘤,尽管采用标准化放化疗,其五年生存率估计仍低于10%。在复发时,全身治疗选择有限,标准治疗方案尚未明确,强烈鼓励患者参加临床试验。迄今为止,免疫治疗策略在GBM中的应用尚未证明能显著改善新诊断GBM患者或复发患者的预后。这可能与中枢神经系统独特的免疫环境有关,该环境中存在多种免疫抑制/促肿瘤因子,包括可溶性因子(如TGF-β、IL-10、STAT3、前列腺素E2和VEGF)和细胞成分(如Tregs、M2表型TAMs和MDSC)。本文综述了GBM微环境的免疫组成,特别关注T细胞亚群的表型和功能。
此外,我们还探讨了治疗策略,如免疫检查点阻断、疫苗和过继细胞治疗,这些策略与TIL(肿瘤浸润淋巴细胞)相互作用,可能以不同方式靶向肿瘤微环境并增强标准治疗的活性。推进GBM免疫治疗临床研究的路径依赖于双重策略:测试联合治疗方案,旨在恢复有效的免疫抗肿瘤反应、应对免疫抑制,此外,设计更多的0期和窗口期试验,结合扎实的转化分析,以更深入地了解治疗过程中GBM微环境的塑造。
Glioblastoma (GBM) is the most aggressive and lethal primary brain tumor, bearing a survival estimate below 10% at five years, despite standard chemoradiation treatment. At recurrence, systemic treatment options are limited and the standard of care is not well defined, with inclusion in clinical trials being highly encouraged.
So far, the use of immunotherapeutic strategies in GBM has not proved to significantly improve patients' prognosis in the treatment of newly diagnosed GBM, nor in the recurrent setting. Probably this has to do with the unique immune environment of the central nervous system, which harbors several immunosuppressive/pro-tumorigenic factors, both soluble (e. g. , TGF-β, IL-10, STAT3, prostaglandin E2, and VEGF) and cellular (e. g. , Tregs, M2 phenotype TAMs, and MDSC).
Here we review the immune composition of the GBMs microenvironment, specifically focusing on the phenotype and function of the T cell compartment.
Moreover, we give hints on the therapeutic strategies, such as immune checkpoint blockade, vaccinations, and adoptive cell therapy, that, interacting with tumor-infiltrating lymphocytes, might both target in different ways the tumor microenvironment and potentiate the activity of standard therapies.
The path to be followed in advancing clinical research on immunotherapy for GBM treatment relies on a twofold strategy: testing combinatorial treatments, aiming to restore active immune anti-tumor responses, tackling immunosuppression, and additionally, designing more phase 0 and window opportunity trials with solid translational analyses to gain deeper insight into the on-treatment shaping of the GBM microenvironment.
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