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:Rational design of PD-1-CD28 immunostimulatory fusion proteins for CAR T cell therapy.
Rational design of PD-1-CD28 immunostimulatory fusion proteins for CAR T cell therapy.
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PD-1-CD28 IFP 构建体必须模拟 PD-1 与 PD-L1 的生理性相互作用,以保持选择性并介导 CAR 条件性治疗活性。
在许多情况下,CAR-T 细胞的治疗效果由于免疫抑制和持久性差而受到限制。免疫刺激融合蛋白 (IFP) 构建体已被发展为一种将抑制信号转化为刺激信号的工具,从而促进 T 细胞的持续存在,但迄今为止尚未建立通用的 IFP 设计。我们现在利用 PD-1-CD28 IFP 作为临床相关结构来定义 IFP 活性的关键决定因素。
我们在人类白血病模型中比较了不同的 PD-1-CD28 IFP 变体,以评估独特的设计选择对体外 CAR-T 细胞性能和异种移植小鼠模型的影响。
我们观察到,假定超过 PD-1 胞外长度的 IFP 构建体会在没有 CAR 靶点识别的情况下诱导 T 细胞反应,从而使其不适合肿瘤特异性治疗。具有生理性 PD-1 长度的 IFP 变体可改善 CAR-T 细胞效应功能和体外对 PD-L1 + 肿瘤细胞的增殖反应,并延长体内存活时间。跨膜或细胞外 CD28 结构域被发现可以被相应的 PD-1 结构域替代以实现体内功效。
In many situations, the therapeutic efficacy of CAR T cells is limited due to immune suppression and poor persistence. Immunostimulatory fusion protein (IFP) constructs have been advanced as a tool to convert suppressive signals into stimulation and thus promote the persistence of T cells, but no universal IFP design has been established so far. We now took advantage of a PD-1-CD28 IFP as a clinically relevant structure to define key determinants of IFP activity.
We compared different PD-1-CD28 IFP variants in a human leukemia model to assess the impact of distinctive design choices on CAR T cell performance in vitro and a xenograft mouse model.
We observed that IFP constructs that putatively exceed the extracellular length of PD-1 induce T-cell response without CAR target recognition, rendering them unsuitable for tumour-specific therapy. IFP variants with physiological PD-1 length ameliorated CAR T cell effector function and proliferation in response to PD-L1 + tumour cells in vitro and prolonged survival in vivo. Transmembrane or extracellular CD28 domains were found to be replaceable by corresponding PD-1 domains for in vivo efficacy.
PD-1-CD28 IFP constructs must mimic the physiological interaction of PD-1 with PD-L1 to retain selectivity and mediate CAR-conditional therapeutic activity.
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