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:Antitumor Immunity Mediated by Engineered Stem Cells Exploiting TRAIL-Induced Cell Death and FLT3L Immunomodulation.
本研究揭示 TRAIL 介导的细胞死亡在 TIME 中的免疫学作用,并为封装细胞疗法杀伤残留肿瘤细胞、诱导长期免疫提供证据。
目的:靶向死亡受体(DR)的疗法可为胶质母细胞瘤(GBM)等高度恶性脑肿瘤提供肿瘤细胞特异性治疗策略。然而,DR介导的细胞死亡是否会激活适应性免疫系统并影响肿瘤免疫微环境(TIME)尚不明确。本研究探索可分泌的人DR4/5配体——肿瘤坏死因子相关凋亡诱导配体(S-TRAIL)的免疫调节作用,以及间充质干细胞(SC)递送S-TRAIL和髓系祖细胞活化细胞因子FMS样酪氨酸激酶3配体(FLT3L)的治疗潜力。实验设计:建立表达人-鼠嵌合DR5的免疫活跃型及免疫抑制型同系小鼠GBM模型;构建可释放FLT3L和S-TRAIL的治疗性SC,并评估其在GBM模型中的疗效。为促进临床转化,在同系及人源化小鼠GBM切除模型中测试封装SC-TRAIL/FLT3L的机制相关疗效。结果:S-TRAIL诱导的GBM细胞凋亡可促使树突状细胞浸润TIME并在体内成熟。GBM手术切除后局部移植封装的双功能S-TRAIL/FLT3L SC,可提高生存概率,并上调常规1型树突状细胞和CD8+ T细胞。在携带GBM的人源化小鼠中,给予封装的现货型临床级双功能人SC后,肿瘤体积显著减小。结论:本研究揭示TRAIL介导的细胞死亡在TIME中的免疫学作用,并为基于封装细胞的疗法清除残余肿瘤细胞、诱导长期免疫提供证据。
PURPOSE: Death receptor (DR)-targeted therapies offer a promising tumor cell-specific therapeutic strategy for highly malignant brain tumors, such as glioblastoma (GBM). However, whether DR-mediated cell death leads to activation of the adaptive immune system and impacts the tumor immune microenvironment (TIME) remains unknown. In this study, we explored the (i) immunomodulatory role of secretable human DR4/5 ligand, TNF-related apoptosis-inducing ligand (S-TRAIL) and (ii) the therapeutic potential of mesenchymal stem cell (SC)-delivered S-TRAIL and myeloid progenitor cell-activating cytokine, FMS-like tyrosine kinase 3 ligand (FLT3L). EXPERIMENTAL DESIGN: We created syngeneic murine immune-active and -suppressive mouse GBM tumor models expressing a human-murine chimeric DR5. Next, we created therapeutic SCs that release FLT3L and S-TRAIL and assessed their efficacy in GBM tumor models. To facilitate clinical translation, we tested the mechanism-based efficacy of encapsulated SC-TRAIL/FLT3L in both syngeneic and humanized mouse tumor models of GBM resection. RESULTS: We show that S-TRAIL-induced apoptosis in GBM cells provokes infiltration and maturation of dendritic cells within the TIME in vivo. Next, we show that locoregional transplantation of encapsulated bimodal SCs expressing S-TRAIL and FLT3L post surgical GBM resection improves the survival probability and induces upregulation of conventional dendritic cell type 1 and CD8+ T cells. Furthermore, treatment with encapsulated off-the-shelf clinical-grade bimodal human SCs in GBM-bearing humanized mice results in a significant decrease in tumor volumes. CONCLUSIONS: This study uncovers the immunologic role of TRAIL-mediated cell death in the TIME and provides evidence for the encapsulated cell-based therapy to kill residual tumor cells and induce long-term immunity.
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