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:Phosphatidylserine as a tumor target for CAR-T cell therapy.
Phosphatidylserine as a tumor target for CAR-T cell therapy.
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PS 有望成为 CAR-T 细胞治疗的靶抗原,这凸显出有必要将自相残杀作为 PS 靶向 CAR-T 细胞开发中的关键挑战加以解决。
凋亡细胞表面暴露的磷脂酰丝氨酸(PS)可促进死细胞的免疫清除,且不诱导炎症。相反,活肿瘤细胞表面暴露的 PS 会促进免疫抑制性肿瘤微环境,从而阻碍抗肿瘤免疫应答。在确认多种肿瘤细胞系和癌症组织中 PS 水平升高后,我们旨在研究其作为CAR-T 细胞治疗靶抗原的潜力。
我们使用了两种不同的方法来靶向 PS。首先,我们采用衔接蛋白 EDAnnexin 或 BCMAnnexin,其包含膜联蛋白 V 和 EDA(纤连蛋白的额外结构域 A)抗原或 B 细胞成熟抗原(BCMA)抗原,以将 EDA CAR-T 或 BCMA CAR-T 细胞的裂解活性重定向至表达 PS 的肿瘤细胞。在第二种方法中,我们开发了一种基于膜联蛋白 V 的 CAR(Anxa CAR-T),以直接识别 PS 阳性肿瘤细胞。
衔接蛋白 EDAnnexin 和 BCMAnnexin 成功重定向了 EDA CAR-T 或 BCMA CAR-T 细胞的活性,从而在体外高效识别 PS+ 肿瘤细胞。然而,所建立的免疫突触与 CAR-T 细胞直接识别肿瘤细胞时观察到的情况存在显著差异。在体内给予衔接蛋白并联合相应的 CAR-T 细胞,在荷 PS+ 肿瘤小鼠中显示出抗肿瘤活性。关于第二种策略,Anxa CAR-T 细胞在体外能够有效识别并杀伤 PS+ 肿瘤细胞。然而,T 细胞活化过程中 T 细胞膜上 PS 的暴露,因自相残杀效应而阻碍了 Anxa CAR-T 细胞的高效制备。通过优化逆转录病毒剂量以降低细胞膜上 Anxa CAR 的表达,或使用多激酶抑制剂 dasatinib,该自相残杀效应得以减轻,从而能够成功制备 Anxa CAR Low-T 细胞。值得注意的是,Anxa CAR Low-T 细胞在 PS+ 肝细胞癌和畸胎癌的体内小鼠模型中表现出抗肿瘤活性。给予 Anxa CAR-T 细胞后未观察到毒性迹象。
Phosphatidylserine (PS) exposed on apoptotic cells promotes immune clearance of dead cells without inducing inflammation. Conversely, PS exposure on live tumor cells promotes an immunosuppressive tumor microenvironment that hinders antitumor immune responses. After confirming elevated PS levels in various tumor cell lines and cancer tissues, we aimed to investigate its potential as a target antigen for chimeric antigen receptor T cell (CAR-T) therapy.
We used two different approaches to target PS. First, we employed the adaptor proteins, EDAnnexin or BCMAnnexin comprising annexin V and EDA (extra domain A of fibronectin) or B-cell maturation antigen (BCMA) antigens, to redirect the lytic activity of EDA CAR-T or BCMA CAR-T cells toward PS-expressing tumor cells. In a second approach, we developed an annexin V-based CAR (Anxa CAR-T) to directly recognize PS-positive tumor cells.
The adaptors proteins EDAnnexin and BCMAnnexin successfully redirected EDA CAR-T or BCMA CAR-T cell activity, leading to an efficient recognition of PS + tumor cells in vitro. However, the established immunological synapse differs significantly from that observed when CAR-T cells recognize the tumor cells directly. In vivo administration of the adaptor proteins, combined with the corresponding CAR-T cells, displayed antitumor activity in mice bearing PS + tumors. Regarding the second approach, Anxa CAR-T cells effectively recognized and killed PS + tumor cells in vitro. Nonetheless, PS exposure on T-cell membranes during T-cell activation impeded efficient Anxa CAR-T cell manufacturing due to fratricide. By optimizing retroviral dose to reduce Anxa CAR expression on the cell membrane, or by using the multikinase inhibitor dasatinib, the fratricide effect was mitigated, enabling successful Anxa CAR Low -T cell production. Remarkably, Anxa CAR Low -T cells demonstrated antitumor activity in in vivo murine models of PS + hepatocarcinoma and teratocarcinoma. No signs of toxicity were observed after Anxa CAR-T cell administration.
PS holds promise as a target antigen for CAR-T cell therapy, underscoring the need to address fratricide as a key challenge in the development of PS-targeting CAR-T cells.
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