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:Design and Validation of Inducible TurboCARs with Tunable Induction and Combinatorial Cytokine Signaling.
Design and Validation of Inducible TurboCARs with Tunable Induction and Combinatorial Cytokine Signaling.
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尽管细胞因子支持可以增强CAR-T 细胞功能,但共给细胞因子或工程化CAR-T 细胞以分泌细胞因子可能导致毒性。为降低这些安全风险,我们工程化改造了iTurboCAR T细胞,其共表达一种新型可诱导Turbo(iTurbo)细胞因子信号结构域。iTurbo结构域由模块化组件组成,可针对多种激活输入进行定制,并且细胞因子信号输出可多重化以实现组合信号结果。与大多数为异二聚体的经典细胞因子受体不同,iTurbo结构域利用紧凑的同二聚体设计,从而将病毒载体载货量降至最低。使用由临床验证的二聚化剂AP1903激活的iTurbo结构域,同二聚体iTurbo结构域启动了模拟内源性异二聚体细胞因子受体的信号传导。不同的iTurbo结构域将iTurboCAR T细胞编程为不同表型,并带来改善的抗肿瘤疗效。
因此,iTurbo结构域提供了用户可编程信号输出的灵活性,允许对细胞表型和功能进行控制,同时最小化病毒载货足迹。
Although cytokine support can enhance CAR T-cell function, coadministering cytokines or engineering CAR T cells to secrete cytokines can result in toxicities. To mitigate these safety risks, we engineered iTurboCAR T cells that coexpress a novel inducible Turbo (iTurbo) cytokine signaling domain. iTurbo domains consist of modular components that are customizable to a variety of activating inputs, as well as cytokine signaling outputs multiplexable for combinatorial signaling outcomes. Unlike most canonical cytokine receptors that are heterodimeric, iTurbo domains leverage a compact, homodimeric design that minimizes viral vector cargo.
Using an iTurbo domain activated by the clinically validated dimerizer, AP1903, homodimeric iTurbo domains instigated signaling that mimicked the endogenous heterodimeric cytokine receptor. Different iTurbo domains programmed iTurboCAR T cells toward divergent phenotypes and resulted in improved antitumor efficacy. iTurbo domains, therefore, offer the flexibility for user-programmable signaling outputs, permitting control over cellular phenotype and function while minimizing viral cargo footprint.
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