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.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:T(STEM)-like CAR-T cells exhibit improved persistence and tumor control compared with conventional CAR-T cells in preclinical models.
T(STEM)-like CAR-T cells exhibit improved persistence and tumor control compared with conventional CAR-T cells in preclinical models.
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CAR-T 产品中记忆T细胞富集与更强扩增及持久存留相关,可改善疾病控制。人记忆T细胞包括干性CD8记忆T细胞前体,可分化为功能性干样T细胞(TSTEM)或功能障碍性前体耗竭T细胞(TPEX)。在一项Lewis Y CAR-T I期试验(NCT03851146)中,输注产品TSTEM细胞较少,患者体内CAR-T 持续性也较差。为解决此问题,研究者开发生产方案,制备富含细胞复制通路基因表达的TSTEM样CAR-T。与常规CAR-T 相比,TSTEM样CAR-T 增殖能力更强,CAR刺激后细胞因子分泌更多,体外慢性刺激后亦如此;这些反应依赖生产期间CD4 T细胞的存在。过继输注TSTEM样CAR-T 在临床前模型中更好控制既有肿瘤,并抵抗肿瘤再挑战,伴随更高细胞持久性及更大的记忆T细胞库。TSTEM样CAR-T 联合抗PD-1可清除既有肿瘤,同时肿瘤浸润、产生IFN-γ的CD8阳性CAR-T 增加。结论:该生产方案可获得疗效增强的TSTEM样CAR-T,提高体内增殖和持久存留。
Patients who receive chimeric antigen receptor (CAR)-T cells that are enriched in memory T cells exhibit better disease control as a result of increased expansion and persistence of the CAR-T cells. Human memory T cells include stem-like CD8 + memory T cell progenitors that can become either functional stem-like T (T STEM ) cells or dysfunctional T progenitor exhausted (T PEX ) cells. To that end, we demonstrated that T STEM cells were less abundant in infused CAR-T cell products in a phase 1 clinical trial testing Lewis Y-CAR-T cells (NCT03851146), and the infused CAR-T cells displayed poor persistence in patients. To address this issue, we developed a production protocol to generate T STEM -like CAR-T cells enriched for expression of genes in cell replication pathways.
Compared with conventional CAR-T cells, T STEM -like CAR-T cells had enhanced proliferative capacity and increased cytokine secretion after CAR stimulation, including after chronic CAR stimulation in vitro. These responses were dependent on the presence of CD4 + T cells during T STEM -like CAR-T cell production. Adoptive transfer of T STEM -like CAR-T cells induced better control of established tumors and resistance to tumor rechallenge in preclinical models.
These more favorable outcomes were associated with increased persistence of T STEM -like CAR-T cells and an increased memory T cell pool. Last, T STEM -like CAR-T cells and anti-programmed cell death protein 1 (PD-1) treatment eradicated established tumors, and this was associated with increased tumor-infiltrating CD8 + CAR + T cells producing interferon- .
In conclusion, our CAR-T cell protocol generated T STEM -like CAR-T cells with enhanced therapeutic efficacy, resulting in increased proliferative capacity and persistence in vivo.
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