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:CD4 CAR-T cells targeting CD19 play a key role in exacerbating cytokine release syndrome, while maintaining long-term responses.
CD4 CAR-T cells targeting CD19 play a key role in exacerbating cytokine release syndrome, while maintaining long-term responses.
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这些数据指出,改进过继性 T 细胞疗法的合理设计应考虑 CD4 CAR-T 细胞的生物学特征,这些特征对于维持长期反应至关重要,但也具有更高的毒性潜力。
迄今,用 CD19 特异性嵌合抗原受体 (CAR) 重定向的 T 细胞已在 B 细胞恶性肿瘤中取得令人瞩目的成功。然而,治疗失败很常见,且严重毒性如细胞因子释放综合征 (CRS) 的发生仍限制该方法的充分应用。因此,亟需开发具有更优治疗指数的细胞产品。
在本项目中,我们研究了CD4和CD8细胞群在CD19 CAR-T 细胞应答过程中如何协同,以及它们在CRS发生中的具体作用。为此,我们利用了重建了人类免疫系统(HuSGM3)并移植了B细胞急性淋巴细胞白血病细胞系NALM-6的免疫缺陷小鼠,该模型能够全面研究CD19 CAR-T 细胞产品的疗效和毒性特征。
CD4 CAR-T 细胞表现出更强的增殖和活化潜能,这转化为对髓系细胞更强的刺激,而髓系细胞是不良事件的主要触发因素。相应地,在 HuSGM3 小鼠中进行的毒性评估确定 CD4 CAR-T 细胞是 CRS 发生的关键促成因素,并揭示当其携带嵌入 4-1BB 而非 CD28 的 CAR 时具有更安全的特征。通过比较差异共刺激的 CD4:CD8 1:1 CAR-T 细胞配方,我们观察到 CD4 细胞塑造了输注产品的整体扩增动力学,并且对维持长期应答至关重要。有趣的是,CD4.BBz 与 CD8.28z CAR-T 细胞的组合产生了最低的毒性,且不影响抗肿瘤疗效。
To date, T cells redirected with CD19-specific chimeric antigen receptors (CAR) have gained impressive success in B-cell malignancies. However, treatment failures are common and the occurrence of severe toxicities, such as cytokine release syndrome (CRS), still limits the full exploitation of this approach. Therefore, the development of cell products with improved therapeutic indexes is highly demanded.
In this project, we investigated how CD4 and CD8 populations cooperate during CD19 CAR-T cell responses and what is their specific role in CRS development. To this aim, we took advantage of immunodeficient mice reconstituted with a human immune system (HuSGM3) and engrafted with the B-cell acute lymphoblastic leukemia cell line NALM-6, a model that allows to thoroughly study efficacy and toxicity profiles of CD19 CAR-T cell products.
CD4 CAR-T cells showed superior proliferation and activation potential, which translated into stronger stimulation of myeloid cells, the main triggers of adverse events. Accordingly, toxicity assessment in HuSGM3 mice identified CD4 CAR-T cells as key contributors to CRS development, revealing a safer profile when they harbor CARs embedded with 4-1BB, rather than CD28. By comparing differentially co-stimulated CD4:CD8 1:1 CAR-T cell formulations, we observed that CD4 cells shape the overall expansion kinetics of the infused product and are crucial for maintaining long-term responses. Interestingly, the combination of CD4.BBz with CD8.28z CAR-T cells resulted in the lowest toxicity, without impacting antitumor efficacy.
Taken together, these data point out that the rational design of improved adoptive T-cell therapies should consider the biological features of CD4 CAR-T cells, which emerged as crucial for maintaining long-term responses but also endowed by a higher toxic potential.
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