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:Synthetic SIGLEC9-based chimeric switch receptor augments the efficacy of CAR macrophages against glioblastoma.
嵌合抗原受体巨噬细胞(CAR-M)疗法是治疗多形性胶质母细胞瘤(GBM)的一种有前景的治疗方法。
嵌合抗原受体巨噬细胞(CAR-M)疗法是治疗多形性胶质母细胞瘤(GBM)的一种有前景的治疗方法。然而,CAR-Ms 的持久抗肿瘤巨噬细胞表型受到高度免疫抑制性肿瘤微环境(TME)的限制,其中 Siglec-唾液酸信号直接驱动巨噬细胞向促肿瘤表型极化。我们在此报告一种基于 SIGLEC9 的原位合成嵌合开关受体(CSR),用于将抑制性信号转化为正向信号,增强 CAR-Ms 在 GBM 微环境中的持续促炎表型和杀肿瘤免疫。具体而言,我们的结果表明,靶向巨噬细胞的可电离脂质纳米颗粒能有效地将双 circRNAs 引入巨噬细胞,在体外和体内生成 CSR 功能化的 CAR-Ms。修饰后的巨噬细胞维持促炎状态,表现出优越的吞噬活性,从而快速高效地清除 IL13Rα2 阳性肿瘤细胞。此外,一种用于重编程胶质瘤切除腔周围巨噬细胞的可注射纳米颗粒-水凝胶系统启动了局部抗肿瘤免疫反应,并引发了强大的长期免疫记忆,抑制了术后 GBM 模型中的肿瘤复发。总之,我们的研究结果证实,工程化的基于 SIGLEC9 的 CSR 显著促进了 CAR-Ms 在高唾液酸化酸性 TME 中抗肿瘤表型的维持,有助于改善基于工程化巨噬细胞的 GBM 免疫治疗。
Chimeric antigen receptor macrophage (CAR-M) therapy represents a promising therapeutic approach for treating glioblastoma multiforme (GBM). However, durable antitumorigenic macrophage phenotype of CAR-Ms is limited by the highly immunosuppressive tumor microenvironment (TME), wherein Siglec-sialic acid signaling directly drives macrophage polarization toward a protumorigenic phenotype. We here report an in situ synthetic SIGLEC9-based chimeric switch receptor (CSR) for diverting the inhibitory signal into positive ones, augmenting the sustained proinflammatory phenotype and tumoricidal immunity of CAR-Ms in the GBM niche. Specifically, our results showed that macrophage-targeted ionizable lipid nanoparticles efficiently introduce dual circRNAs into macrophages to generate CSR functionalized CAR-Ms in vitro and in vivo. The modified macrophages maintained a proinflammatory state, exhibited superior phagocytic activity, resulting in rapid and efficient eradication of IL13Rα2-positive tumor cells. Moreover, an injectable nanoparticle-hydrogel system for reprogramming macrophages surrounding the glioma resection cavity initiated a locoregional antitumor immune response and elicited robust long-term immunological memory, inhibiting tumor relapse in the postoperative GBM model. In sum, our findings establish that the engineered SIGLEC9-based CSR significantly promotes the maintenance of an antitumoral phenotype of CAR-Ms in the hypersialylated acidic TME, contributing to the improvement of engineered macrophage-based immunotherapy against GBM.
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