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:Functional antigen processing and presentation mechanism as a prerequisite factor of response to treatment with dendritic cell vaccines and anti-PD-1 in preclinical murine LLC1 and GL261 tumor models.
Functional antigen processing and presentation mechanism as a prerequisite factor of response to treatment with dendritic cell vaccines and anti-PD-1 in preclinical murine LLC1 and GL261 tumor models.
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癌症免疫疗法疗效低下,促使人们寻找可能的耐药机制和生物标志物,以预测肿瘤患者免疫治疗的结局。大多数癌症免疫疗法作用于T淋巴细胞,T淋巴细胞能够特异性识别并杀伤肿瘤细胞。
然而,免疫治疗激活的T淋巴细胞要能够发挥这些功能,肿瘤抗原的正确加工和通过MHC-I分子的表面呈递至关重要。鉴于抗原加工和呈递机制(APM)在抗肿瘤免疫应答中的重要性,我们试图评估APM的功能状态如何影响肿瘤免疫微环境以及对树突状细胞疫苗(DCV)和anti-PD-1的应答。通过比较小鼠Lewis肺癌LLC1和胶质瘤GL261模型,发现LLC1细胞中APM相关基因如Psmb8、Psmb9、Psmb10、Tap1、Tap2、Erap1、B2m表达降低,表面MHC-I分子低表达。APM相关基因表达的改变影响了T淋巴细胞识别和杀伤LLC1细胞的能力,导致细胞毒性免疫应答缺失以及对DCV和anti-PD-1的耐药。在APM功能保持正常的GL261肿瘤中,观察到了新出现的细胞毒性免疫反应以及对DCV和anti-PD-1的敏感性。
本研究表明,肿瘤对免疫治疗耐药的可能机制之一是APM功能障碍,并揭示了APM相关基因集表达对小鼠预处理肿瘤中树突状细胞疫苗和anti-PD-1治疗个体化的预测潜力。
Low efficacy of cancer immunotherapy encourages the search for possible resistance mechanisms and biomarkers that would predict the outcome of immunotherapy in oncology patients. Most cancer immunotherapies act on T lymphocytes, which can specifically recognize and kill tumor cells.
However, for immunotherapy-activated T lymphocytes to be able to perform these functions, proper tumor Ag processing and surface presentation by MHC-I molecule is important. Knowing the significance of Ag processing and presentation mechanism (APM) in anti-tumor immune response, we sought to evaluate how the functionality of APM affects tumor immune microenvironment and response to dendritic cell vaccines (DCV) and anti-PD-1.
By comparing murine Lewis lung carcinoma LLC1 and glioma GL261 models a decreased expression of APM-related genes, such as Psmb8, Psmb9, Psmb10, Tap1, Tap2, Erap1, B2m, and low expression of surface MHC-I molecule were found in LLC1 cells.
Changes in APM-related gene expression affected the ability of T lymphocytes to recognize and kill LLC1 cells, resulting in the absence of cytotoxic immune response and resistance to DCV and anti-PD-1. An emerging cytotoxic immune reaction and sensitivity to DCV and anti-PD-1 were observed in GL261 tumors where APM remained functional.
This study demonstrates that one of the possible mechanisms of tumor resistance to immunotherapy is a dysfunctional APM and reveals a predictive potential of APM-related gene set expression for the personalization of dendritic cell vaccine and anti-PD-1 therapies in murine pre-treated tumors.
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