肿瘤细胞治疗研究
英文原题:GD2 CAR-T cells in combination with Nivolumab exhibit enhanced antitumor efficacy.
GD2 CAR-T cells in combination with Nivolumab exhibit enhanced antitumor efficacy.
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胶质母细胞瘤(GBM)是一种常见原发性脑肿瘤,临床预后较差。CAR-T 疗法虽已用于 GBM 临床试验,但结局不理想,可能与 T 细胞耗竭和危及生命的神经毒性有关。为解决这些问题,本研究测试联合治疗策略,将 GD2 CAR-T 与抗 PD-1 单克隆抗体 nivolumab 合用。研究建立效应细胞与靶细胞共培养系统,评估 CAR-T 短期和长期细胞毒性,并分析 PD-1/PD-L1 信号通路相关的抑制活性和 T 细胞耗竭。研究还建立原位 NOD/SCID GBM 动物模型,评估不同剂量 GD2 CAR-T 联合 nivolumab 的安全性和疗效。GD2 CAR-T 在体外以剂量依赖方式表现出显著抗原特异性细胞毒性。在共培养系统中加入 nivolumab 可增强 GD2 CAR-T 细胞毒性的持续性。动物研究提示 GD2 CAR-T 可有效浸润肿瘤组织并显著抑制肿瘤进展。中等剂量 CAR-T 联合 nivolumab 达到最佳治疗结局,生存期延长至最高 60 天。
进一步毒性研究显示,高剂量 GD2 CAR-T 可通过 p53/caspase-3/PARP 信号通路诱导肿瘤细胞凋亡。
本研究提示,GD2 CAR-T 联合 nivolumab 可能为 GBM 治疗提供更有效策略。
Glioblastoma (GBM) is a common primary brain tumor with poor clinical prognosis. Although CAR-T therapy has been trialed for treatment of GBM, the outcomes are sub-optimal possibly due to exhaustion of T cells and life-threatening neurotoxicity. To address these issues, a combined therapeutic strategy was tested in the current study using GD2 CAR-T together with Nivolumab - an anti-PD-1 monoclonal antibody. An effector-to-target co-culture system was established to evaluate the short-term and long-term cytotoxicity of CAR-T, as well as to investigate the inhibitory activity and T cell exhaustion associated with the PD-1/PD-L1 signaling pathway.
Orthotopic NOD/SCID GBM animal models were generated to evaluate the safety and efficacy of the combined therapeutic strategy at various dosages of GD2 CAR-T with Nivolumab. GD2 CAR-T exhibited significant antigen-specific cytotoxicity in a dose-dependent manner in vitro. The persistence of cytotoxicity of GD2 CAR-T could be enhanced by addition of Nivolumab in the co-culture system.
Animal studies suggested that GD2 CAR-T effectively infiltrated into tumor tissue and significantly hampered tumor progression. The optimal therapeutic outcome was obtained via using the medium dosage of CAR-T with Nivolumab, which displayed the highest efficacy in extending the survival up to 60 days.
Further investigation of toxicity revealed that high-dosage of GD2 CAR-T could induce tumor apoptosis through p53/caspase-3/PARP signaling pathway.
This study suggests that GD2 CAR-T in combination with Nivolumab may offer an improved therapeutic strategy for treatment of GBM.
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