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.
我们的工作确立了CD81作为连接放射抵抗与免疫逃逸的关键桥梁,其通过维持GBM中CD274的丰度发挥作用,并突显CD81作为优化放射免疫治疗的有前景的治疗靶点。
英文原题:An immune-competent, replication-permissive Syrian Hamster glioma model for evaluating Delta-24-RGD oncolytic adenovirus.
这种允许腺病毒复制且具有免疫活性的仓鼠胶质瘤模型克服了以往模型系统的局限性,为研究肿瘤细胞、宿主免疫系统与溶瘤腺病毒治疗之间的相互作用提供了一个新平台;理解这些相互作用对于将溶瘤腺病毒应用于临床至关重要。
溶瘤腺病毒是治疗实体瘤(尤其是胶质母细胞瘤(GBM))有前景的新疗法,需要临床前模型来评估其疗效机制。然而,由于腺病毒的物种选择性,目前尚无单一动物模型能够同时支持病毒复制、肿瘤溶瘤和病毒介导的免疫反应。为填补这一空白,我们利用叙利亚仓鼠开发了首个既允许腺病毒复制又具有免疫活性的颅内胶质瘤模型。
我们通过用 hTERT、猿猴病毒 40 大 T 抗原和 h-RasV12 转化仓鼠神经干细胞,生成了仓鼠胶质瘤干样细胞(hamGSCs)。使用导螺钉系统,我们在仓鼠中建立了颅内肿瘤模型。通过生存研究评估了溶瘤腺病毒 Delta-24-RGD 的疗效,并通过流式细胞术评估了TIL(肿瘤浸润淋巴细胞)(TILs)。
体外实验中,hamGSCs支持病毒复制,并对Delta-24-RGD介导的细胞死亡敏感。体内实验中,hamGSCs一致发展成高度增殖的肿瘤,类似于高级别胶质瘤。对仓鼠胶质瘤的流式细胞术分析显示,Delta-24-RGD感染的肿瘤中T细胞浸润显著增加,表明免疫激活。与用磷酸盐缓冲液(PBS)治疗的仓鼠相比,用Delta-24-RGD治疗荷瘤仓鼠显著提高了生存率。
BACKGROUND: Oncolytic adenoviruses are promising new treatments against solid tumors, particularly for glioblastoma (GBM), and preclinical models are required to evaluate the mechanisms of efficacy. However, due to the species selectivity of adenovirus, there is currently no single animal model that supports viral replication, tumor oncolysis, and a virus-mediated immune response. To address this gap, we took advantage of the Syrian hamster to develop the first intracranial glioma model that is both adenovirus replication-permissive and immunocompetent. METHODS: We generated hamster glioma stem-like cells (hamGSCs) by transforming hamster neural stem cells with hTERT, simian virus 40 large T antigen, and h-RasV12. Using a guide-screw system, we generated an intracranial tumor model in the hamster. The efficacy of the oncolytic adenovirus Delta-24-RGD was assessed by survival studies, and tumor-infiltrating lymphocytes (TILs) were evaluated by flow cytometry. RESULTS: In vitro, hamGSCs supported viral replication and were susceptible to Delta-24-RGD mediated cell death. In vivo, hamGSCs consistently developed into highly proliferative tumors resembling high-grade glioma. Flow cytometric analysis of hamster gliomas revealed significantly increased T-cell infiltration in Delta-24-RGD infected tumors, indicative of immune activation. Treating tumor-bearing hamsters with Delta-24-RGD led to significantly increased survival compared to hamsters treated with phosphate buffered saline (PBS). CONCLUSIONS: This adenovirus-permissive, immunocompetent hamster glioma model overcomes the limitations of previous model systems and provides a novel platform to study the interactions between tumor cells, the host immune system, and oncolytic adenoviral therapy; understanding of which will be critical to implementing oncolytic adenovirus in the clinic.
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