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:T-bet overexpression enhances CAR T cell effector functions and antigen sensitivity.
T-bet overexpression enhances CAR T cell effector functions and antigen sensitivity.
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嵌合抗原受体(CAR)T细胞治疗B系恶性肿瘤疗效显著,但多达半数患者无法获得持久缓解,对其他癌症类型的疗效也有限。为延长缓解持续时间,需寻找提高CAR-T 细胞效力及其对低抗原密度肿瘤应答能力的策略,同时避免细胞功能障碍或持续性下降。
在人和小鼠CAR-T 细胞中过表达T-bet,以模拟T细胞启动时接触信号3细胞因子的情形,促进CD4+ CAR-T 细胞向辅助性T细胞1型(Th1)极化,增强抗肿瘤活性。利用人CAR-T 细胞和异种移植模型,研究T-bet过表达对体内外CAR-T 抗肿瘤活性的影响;另使用同系小鼠CAR-T 模型研究其对长期持续性及肿瘤再次攻击后继发应答的影响。
T-bet过表达降低Th2细胞因子IL-4表达,并促进CAR刺激后多功能Th1相关细胞因子产生。T-bet过表达增强部分体外效应功能,但未改善体内对高抗原表达白血病的CAR-T 控制作用。T-bet过表达还增强小鼠CD19 CAR-T 细胞效应功能,且未损害其持续性,也未影响持续存在CAR-T 细胞再次扩增并清除继发白血病挑战的能力。最后,T-bet过表达增强了体外对低水平表达CD19白血病的功能;在人源、含4-1BB共刺激结构域的C19 CAR-T 细胞中,该作用转化为体内对CD19低表达白血病控制的改善。
T-bet过表达可降低Th2细胞因子产生、增加多功能Th1细胞因子产生,并增强含4-1BB的CAR-T 细胞对低靶抗原表达癌症的活性,同时不导致CAR-T 功能持续性丧失。
T cells modified to express a chimeric antigen receptor (CAR) are successful against B-lineage malignancies but fail to induce durable remissions in up to half of patients and have shown limited efficacy against other types of cancer. Strategies to improve CAR T cell potency and responses to low antigen densities without inducing CAR T cell dysfunction or limiting persistence are necessary to expand durability of remissions.
We overexpressed T-bet in human and mouse CAR T cells to mimic exposure to signal 3 cytokines during T cell priming to promote T helper cell 1 (Th1) polarization of CD4+CAR T cells with the goal of enhancing antitumor activity. Using human CAR T cells and xenograft models we interrogated the impact of T-bet overexpression on CAR T cell antitumor activity in vitro and in vivo. We also used a syngeneic murine CAR T cell model to study the impact of T-bet overexpression on long-term persistence and secondary responses to tumor rechallenge.
T-bet overexpression reduced expression of the Th2 cytokine interleukin 4 and promoted polyfunctional production of Th1-associated cytokines in response to CAR stimulation. T-bet overexpression enhanced some effector functions in vitro but did not improve CAR T cell-mediated control of leukemia expressing high levels of antigen in vivo. T-bet overexpression also improved effector function of murine CD19 CAR T cells with no impairment to the persistence or ability of persistent CAR T cells to re-expand and clear a secondary leukemia challenge. Finally, T-bet overexpression promoted enhanced in vitro function against leukemia expressing low levels of CD19, which translated to improved control of CD19lo leukemia in vivo by human C19 CAR T cells containing a 4-1BB costimulatory domain.
Together, our data demonstrate that T-bet overexpression induces a reduction in Th2 cytokine production, an increase in polyfunctional Th1 cytokine production and enhances 4-1BB CAR T cell activity against cancers expressing low levels of target antigen without promoting a loss in functional CAR T cell persistence.
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