通过整合优化的 CAR 内结构域和 iNKT 衔接器增强 iNKT 细胞免疫治疗
Enhancing iNKT cell immunotherapy through the integration of optimized CAR endodomains and iNKT engagers.
iNKT细胞正逐渐成为一种极具前景的癌症免疫治疗平台。
英文原题:Co-targeting of VEGFR2 and PD-L1 promotes survival and vasculature normalization in pleural mesothelioma.
这些发现表明,PD-L1和VEGFR2的双重抑制是PM的一种有前景的治疗方法,其中CD4+ T细胞在免疫反应中发挥关键作用。
胸膜间皮瘤(PM)是一种由石棉暴露引起的侵袭性癌症,治疗选择有限且预后较差,凸显了对更有效疗法的需求。将免疫检查点阻断与抗血管生成治疗联合在其他癌症中已显示出潜力。我们的研究在PM小鼠模型中探讨了PD-L1和VEGFR2的联合抑制。使用皮下接种AE17间皮瘤肿瘤的C57BL/6小鼠,我们评估了抗PD-L1治疗联合诱导期、同期或巩固期抗VEGFR2治疗的效果。小鼠每三天接受一次腹腔注射给药,共三次治疗。分析了肿瘤生长、生存期、肿瘤浸润免疫细胞和瘤内血管系统。结果表明,抗PD-L1联合诱导期或同期抗VEGFR2可显著延缓肿瘤生长、改善生存期并促进血管成熟。流式细胞术提示单药治疗组存在T细胞耗竭,而同期治疗组未见显著变化。清除CD4+ T细胞可逆转同期治疗的积极效果。这些发现表明,PD-L1和VEGFR2的双重抑制是PM的一种有前景的治疗策略,其中CD4+ T细胞在免疫应答中发挥关键作用。这种对免疫检查点和血管生成的双重靶向为改善PM治疗结局提供了潜在的新途径,值得进一步的临床探索。
Pleural mesothelioma (PM) is an aggressive cancer caused by asbestos exposure, with limited treatment options and poor prognosis, highlighting the need for more effective therapies. Combining immune checkpoint blockade with anti-angiogenic therapy has shown potential in other cancers. Our study investigated the combined inhibition of PD-L1 and VEGFR2 in a mouse model of PM. Using C57BL/6 mice with subcutaneous AE17 mesothelioma tumors, we assessed the effects of anti-PD-L1 therapy with induction, concomitant, or consolidation anti-VEGFR2 treatment. Mice received intraperitoneal doses every three days for three treatments. Tumor growth, survival, tumor-infiltrating immune cells and intra-tumoral vasculature were analyzed. Results demonstrated that combining anti-PD-L1 with induction or concomitant anti-VEGFR2 significantly delayed tumor growth, improved survival, and promoted vascular maturation. Flow cytometry suggested T cell exhaustion in monotherapy groups, while no significant changes were seen with concomitant treatment. Depleting CD4 + T cells reversed the positive effects of concomitant treatment. These findings suggest that dual inhibition of PD-L1 and VEGFR2 is a promising therapeutic approach for PM, with CD4 + T cells playing a critical role in the immune response. This dual targeting of immune checkpoints and angiogenesis offers a potential new avenue for improving outcomes in PM treatment and warrants further clinical exploration.
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