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:Engineering a natural ligand-based CAR: directed evolution of the stress-receptor NKp30.
Engineering a natural ligand-based CAR: directed evolution of the stress-receptor NKp30.
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B7H6是一种应激诱导配体,可与NK细胞受体NKp30结合。由于其在多种人类肿瘤上具有肿瘤特异性表达,近期已成为有前景的免疫治疗候选靶点。NKp30可作为嵌合抗原受体(CAR)的胞外结构域,但与抗B7H6单链可变片段(scFv)TZ47相比,其与B7H6的结合较弱,且结合和解离速率均较快。
本研究采用酵母展示进行定向进化,筛选出新的NKp30变体:它们与B7H6的亲和力高于天然受体,同时保留快速结合和解离特性。CC3和CC5两个变体被选作进一步表征对象,并制成可溶性Fc融合蛋白,以及含CD28和CD3胞内结构域的CAR。
我们观察到,与TZ47相比,NKp30及其变体的Fc融合蛋白更善于结合低水平表达B7H6的肿瘤细胞;与NKp30相比,新变体通常提高了体外肿瘤细胞杀伤能力。有趣的是,与NKp30和TZ47相比,表达工程化变体的CAR-T 细胞在遇到多种表达B7H6的肿瘤时会产生独特的细胞因子谱。这些发现提示,可对天然CAR受体进行微调,以产生更理想的信号输出,同时保留其相较scFv在配体识别方面的进化优势。
B7H6, a stress-induced ligand which binds to the NK cell receptor NKp30, has recently emerged as a promising candidate for immunotherapy due to its tumor-specific expression on a broad array of human tumors. NKp30 can function as a chimeric antigen receptor (CAR) extracellular domain but exhibits weak binding with a fast on and off rate to B7H6 compared to the TZ47 anti-B7H6 single-chain variable fragment (scFv).
Here, directed evolution using yeast display was employed to isolate novel NKp30 variants that bind to B7H6 with higher affinity compared to the native receptor but retain its fast association and dissociation profile. Two variants, CC3 and CC5, were selected for further characterization and were expressed as soluble Fc-fusion proteins and CARs containing CD28 and CD3 intracellular domains.
We observed that Fc-fusion protein forms of NKp30 and its variants were better able to bind tumor cells expressing low levels of B7H6 than TZ47, and that the novel variants generally exhibited improved in vitro tumor cell killing relative to NKp30. Interestingly, CAR T cells expressing the engineered variants produced unique cytokine signatures in response to multiple tumor types expressing B7H6 compared to both NKp30 and TZ47.
These findings suggest that natural CAR receptors can be fine-tuned to produce more desirable signaling outputs while maintaining evolutionary advantages in ligand recognition relative to scFvs.
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