RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A chimeric switch-receptor PD1-DAP10-41BB augments NK92-cell activation and killing for human lung Cancer H1299 Cell.
A chimeric switch-receptor PD1-DAP10-41BB augments NK92-cell activation and killing for human lung Cancer H1299 Cell.
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工程化自然杀伤(NK)细胞疗法具有潜在的广泛适用性,并在临床试验中展现出有希望的结果,尤其是在抗击癌症方面。然而,NK细胞免疫治疗始终存在变异性。一个主要障碍是包括PD1/PDL1在内的抑制性通路,为肿瘤细胞提供了逃避免疫监视的机制。在这方面,我们合理设计了一种嵌合转换受体(CSR)PD1-DAP10-41BB,其由PD1的胞外域与共刺激受体DAP10和41BB融合而成。
因此,通过将PD1的跨膜区和胞质尾区替换为正向共刺激分子DAP10和41BB信号域,负向的PD1/PDL1信号通路由此被转化为正向信号。表达该CSR的NK92细胞表现出典型的亲本NK92表型,并增强了对人肺癌H1299细胞的细胞毒性。
此外,CSR的表达引发了效应分子如穿孔素和颗粒酶的显著增加,这些分子可诱导H1299细胞凋亡。更重要的是,在荷H1299实体瘤细胞的小鼠模型中,CSR修饰的NK92细胞显著抑制了肿瘤生长。
总体而言,我们证明了PD1-DAP10-41BB的表达在体外和体内均增强了NK92细胞的活化和杀伤能力,这为利用NK定制的嵌合受体工程化NK92细胞治疗多种实体瘤提供了重要途径。
Engineered natural killer (NK) cell-based therapies have been potentially broadly applicable and exhibited promising results in clinical trials, particularly in the fight against cancers. NK cell immunotherapy however always remains variable. One major obstacle is the inhibitory pathway including PD1/PDL1, providing tumor cells an escape mechanism from immunosurveillance. In this regard, we rationally designed a chimeric switch-receptor (CSR) PD1-DAP10-41BB, which comprising the ectodomain of PD1 fused to the co-stimulatory receptor DAP10 and 41BB.
Therefore, by exchanging the transmembrane and cytoplasmic tail of PD1 with positive costimulatory molecules DAP10 and 41BB signaling domains, the negative PD1/PDL1 signal pathway was thus converted into a positive one. This CSR-expressing NK92 cells showed a typical parental NK92 phenotype and improved cytotoxicity against human lung cancer H1299 cells. Besides, the expression of CSR elicited a significant increase of effector molecules such as perforin and granzymes, which can induce apoptosis of H1299 cells.
More importantly, in the solid tumor cell H1299-bearing mice model, the CSR-modified NK92 cells significantly inhibited tumor growth. Collectively, we demonstrated that expression of PD1-DAP10-41BB augmented NK92-cell activation and killing in vitro and in vivo, which provides a considerable avenue of using NK-tailored chimeric receptor engineered NK92 cells to treat a wide range of solid tumors.
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