CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Stressed target cancer cells drive nongenetic reprogramming of CAR T cells and solid tumor microenvironment.
Stressed target cancer cells drive nongenetic reprogramming of CAR T cells and solid tumor microenvironment.
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CAR-T 细胞治疗实体瘤疗效不佳,原因包括肿瘤浸润、体内扩增、持续性和效应功能不足,细胞耗竭,靶抗原异质性或丢失,以及免疫抑制性肿瘤微环境(TME)。本研究提出一种适用范围广的非基因改造策略,可同时应对CAR-T 治疗实体瘤面临的多重挑战。研究将CAR-T 细胞与经细胞应激诱导剂双硫仑(DSF)和铜处理、并接受电离辐射(IR)的应激靶肿瘤细胞共培养,以此重塑CAR-T 细胞。重塑后的CAR-T 细胞获得早期记忆样特征,细胞毒性增强,体内扩增和持续性提高,耗竭减轻。DSF/铜和IR处理的肿瘤还可在人源化小鼠中发生重塑,逆转免疫抑制性TME。来自健康供者或转移性乳腺癌女性患者外周血单个核细胞的重塑CAR-T 细胞,在多个异种移植小鼠模型中诱导强效且持久的记忆反应,实现对实体瘤的治愈性应答。这些结果初步证明,通过使肿瘤处于应激状态来增强CAR-T 功能,是一种有前景的实体瘤治疗策略。
The poor efficacy of chimeric antigen receptor T-cell therapy (CAR T) for solid tumors is due to insufficient CAR T cell tumor infiltration, in vivo expansion, persistence, and effector function, as well as exhaustion, intrinsic target antigen heterogeneity or antigen loss of target cancer cells, and immunosuppressive tumor microenvironment (TME).
Here we describe a broadly applicable nongenetic approach that simultaneously addresses the multiple challenges of CAR T as a therapy for solid tumors. The approach reprograms CAR T cells by exposing them to stressed target cancer cells which have been exposed to the cell stress inducer disulfiram (DSF) and copper (Cu)(DSF/Cu) plus ionizing irradiation (IR). The reprogrammed CAR T cells acquire early memory-like characteristics, potent cytotoxicity, enhanced in vivo expansion, persistence, and decreased exhaustion.
Tumors stressed by DSF/Cu and IR also reprogram and reverse the immunosuppressive TME in humanized mice. The reprogrammed CAR T cells, derived from peripheral blood mononuclear cells of healthy donors or metastatic female breast cancer patients, induce robust, sustained memory and curative anti-solid tumor responses in multiple xenograft mouse models, establishing proof of concept for empowering CAR T by stressing tumor as a promising therapy for solid tumors.
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