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:Photothermal Prussian blue nanoparticles generate potent multi-targeted tumor-specific T cells as an adoptive cell therapy.
基于普鲁士蓝纳米颗粒的光热治疗(PBNP-PTT)是一种有效的肿瘤治疗方法,能够引发抗肿瘤免疫反应。
基于普鲁士蓝纳米颗粒的光热疗法(PBNP-PTT)是一种有效的肿瘤治疗方法,能够引发抗肿瘤免疫反应。受PBNP-PTT增强内源性免疫反应能力的启发,我们最近证明PBNP-PTT可在体外用于生成针对胶质母细胞瘤(GBM)细胞系的肿瘤特异性T细胞,作为过继性T细胞疗法(ATCT)。在本研究中,我们进一步开发了这一有前景的T细胞生成平台。首先,我们评估了使用PBNP-PTT生成的T细胞的表型和功能。我们观察到,PBNP-PTT促进了来自健康供者PBMC的CD8+ T细胞扩增,这些T细胞在响应靶向U87细胞时分泌IFNγ和TNFα并上调CD107a,表明存在特异性抗肿瘤T细胞活化和脱颗粒。此外,与U87细胞共培养后,CD8+效应和效应记忆T细胞群体显著扩增,与肿瘤特异性效应反应一致。在体内原位植入的U87 GBM肿瘤中,与用PBS、非特异性T细胞或从裂解U87细胞扩增的T细胞治疗的小鼠中0%的存活率相比,PBNP-PTT衍生的T细胞有效减少了U87肿瘤生长,并在第100天使>80%的荷瘤小鼠获得长期生存,证明该ATCT平台具有增强的抗肿瘤疗效。最后,我们通过生成靶向髓母细胞瘤(D556)、乳腺癌(MDA-MB-231)、神经母细胞瘤(SH-SY5Y)和急性单核细胞白血病(THP-1)细胞系的T细胞,测试了该方法的普适性。与对照相比,所得T细胞分泌IFNγ并发挥增强的肿瘤特异性细胞溶解功能,证明PBNP-PTT在生成用于ATCT的肿瘤特异性T细胞方面具有多功能性。
Prussian blue nanoparticle-based photothermal therapy (PBNP-PTT) is an effective tumor treatment capable of eliciting an antitumor immune response. Motivated by the ability of PBNP-PTT to potentiate endogenous immune responses, we recently demonstrated that PBNP-PTT could be used ex vivo to generate tumor-specific T cells against glioblastoma (GBM) cell lines as an adoptive T cell therapy (ATCT). In this study, we further developed this promising T cell development platform. First, we assessed the phenotype and function of T cells generated using PBNP-PTT. We observed that PBNP-PTT facilitated CD8+ T cell expansion from healthy donor PBMCs that secreted IFNγ and TNFα and upregulated CD107a in response to engagement with target U87 cells, suggesting specific antitumor T cell activation and degranulation. Further, CD8+ effector and effector memory T cell populations significantly expanded after co-culture with U87 cells, consistent with tumor-specific effector responses. In orthotopically implanted U87 GBM tumors in vivo, PBNP-PTT-derived T cells effectively reduced U87 tumor growth and generated long-term survival in >80% of tumor-bearing mice by Day 100, compared to 0% of mice treated with PBS, non-specific T cells, or T cells expanded from lysed U87 cells, demonstrating an enhanced antitumor efficacy of this ATCT platform. Finally, we tested the generalizability of our approach by generating T cells targeting medulloblastoma (D556), breast cancer (MDA-MB-231), neuroblastoma (SH-SY5Y), and acute monocytic leukemia (THP-1) cell lines. The resulting T cells secreted IFNγ and exerted increased tumor-specific cytolytic function relative to controls, demonstrating the versatility of PBNP-PTT in generating tumor-specific T cells for ATCT.
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