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 Evaluation of TIM-3-CD28 Checkpoint Fusion Proteins to Improve Anti-CD19 CAR T-Cell Function.
Design and Evaluation of TIM-3-CD28 Checkpoint Fusion Proteins to Improve Anti-CD19 CAR T-Cell Function.
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目前,多项临床研究正在探索将抑制性免疫检查点分子靶向治疗与嵌合抗原受体(CAR)T细胞联合,用于血液系统和实体恶性肿瘤。
然而,由于多数急性白血病免疫原性/突变负荷较低,其共抑制通路的影响及治疗意义研究不足。耗竭抑制分子TIM-3是T细胞与白血病细胞相互作用的重要标志。
此外,合成融合分子可将恶性细胞发出的抑制信号转化为刺激信号:其胞外抑制性受体与胞内刺激结构域相连。本研究设计了多种TIM-3-CD28融合蛋白,使TIM-3结合产生的抑制信号通过CD28转化为T细胞激活。在不含抗CD19 CAR时,两种含较大CD28结构域的TIM-3-CD28融合受体在抗CD3抗体刺激后诱导的细胞因子分泌和增殖最强,优于对照。随后,研究者将这两种新型融合蛋白与第一代和第二代抗CD19 CAR-T 细胞结合,发现融合受体能够增强常规抗CD19 CAR-T 细胞的增殖、激活及细胞毒能力。这些进一步装备融合受体的CAR-T 细胞展现出优异效应功能。从安全性角度看,只有在存在CAR靶抗原CD19时,融合受体才会增强细胞因子释放。研究认为,检查点融合蛋白与抗CD19 CAR联合,有望提高T细胞增殖能力,从而克服其攻击恶性细胞时受到的抑制信号。
Therapeutic targeting of inhibitory checkpoint molecules in combination with chimeric antigen receptor (CAR) T cells is currently investigated in a variety of clinical studies for treatment of hematologic and solid malignancies.
However, the impact of co-inhibitory axes and their therapeutic implication remains understudied for the majority of acute leukemias due to their low immunogenicity/mutational load. The inhibitory exhaustion molecule TIM-3 is an important marker for the interaction of T cells with leukemic cells.
Moreover, inhibitory signals from malignant cells could be transformed into stimulatory signals by synthetic fusion molecules with extracellular inhibitory receptors fused to an intracellular stimulatory domain.
Here, we designed a variety of different TIM-3-CD28 fusion proteins to turn inhibitory signals derived by TIM-3 engagement into T-cell activation through CD28. In the absence of anti-CD19 CAR, two TIM-3-CD28 fusion receptors with large parts of CD28 showed strongest responses in terms of cytokine secretion and proliferation upon stimulation with anti-CD3 antibodies compared to controls.
We then combined these two novel TIM-3-CD28 fusion proteins with first- and second-generation anti-CD19 CAR T cells and found that the fusion receptor can increase proliferation, activation, and cytotoxic capacity of conventional anti-CD19 CAR T cells. These additionally armed CAR T cells showed excellent effector function. In terms of safety considerations, the fusion receptors showed exclusively increased cytokine release, when the CAR target CD19 was present.
We conclude that combining checkpoint fusion proteins with anti-CD19 CARs has the potential to increase T-cell proliferation capacity with the intention to overcome inhibitory signals during the response against malignant cells.
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