CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Silencing of SIRPα enhances the antitumor efficacy of CAR-M in solid tumors.
Silencing of SIRPα enhances the antitumor efficacy of CAR-M in solid tumors.
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巨噬细胞介导的吞噬作用作为癌症治疗手段具有广阔前景。用CD47特异性抗体阻断CD47-SIRPα相互作用可显著增强巨噬细胞的吞噬作用。
然而,其对非肿瘤细胞的毒性问题仍然令人高度关注。在此,我们通过将人源化单链可变区片段与FcγRIIa融合,并整合短发夹RNA以沉默SIRPα,从而构建了嵌合抗原受体巨噬细胞(CAR-Ms),由此 disrupt 了CD47-SIRPα信号通路。这些修饰后的CAR-shSIRPα-M细胞表现出M1样表型、优越的吞噬功能、对HER2阳性肿瘤细胞的显著细胞毒性效应,以及清除患者来源类器官的能力。在体内,CAR-M细胞显著抑制了肿瘤生长并延长了荷瘤小鼠的生存期。
值得注意的是,CAR-shSIRPα-M细胞增强了细胞毒性T细胞向肿瘤的浸润,从而在人源化免疫系统小鼠模型和免疫健全小鼠中均增强了抗肿瘤反应。在机制上,SIRPα抑制激活了CAR-M细胞中的炎症通路和cGAS-STING信号级联,导致促炎细胞因子、活性氧和一氧化氮的产生增加,从而增强了其抗肿瘤效应。这些发现强调了SIRPα抑制作为增强CAR-M细胞在癌症免疫治疗中抗肿瘤疗效的新策略的潜力,尤其是针对实体瘤。
The potential of macrophage-mediated phagocytosis as a cancer treatment is promising. Blocking the CD47-SIRPα interaction with a CD47-specific antibody significantly enhances macrophage phagocytosis.
However, concerns regarding their toxicity to nontumor cells remain substantial.
Here, we engineered chimeric antigen receptor macrophages (CAR-Ms) by fusing a humanized single-chain variable fragment with FcγRIIa and integrating short hairpin RNA to silence SIRPα, thereby disrupting the CD47-SIRPα signaling pathway. These modified CAR-shSIRPα-M cells exhibited an M1-like phenotype, superior phagocytic function, substantial cytotoxic effects on HER2-positive tumor cells, and the ability to eliminate patient-derived organoids. In vivo, CAR-M cells significantly inhibited tumor growth and prolonged survival in tumor-bearing mice.
Notably, CAR-shSIRPα-M cells enhanced cytotoxic T-cell infiltration into tumors, thereby enhancing the antitumor response in both the humanized immune system mouse model and immunocompetent mice.
Mechanistically, SIRPα inhibition activated inflammatory pathways and the cGAS-STING signaling cascade in CAR-M cells, leading to increased production of proinflammatory cytokines, reactive oxygen species, and nitric oxide, thereby enhancing their antitumor effects.
These findings underscore the potential of SIRPα inhibition as a novel strategy to increase the antitumor efficacy of CAR-M cells in cancer immunotherapy, particularly against solid tumors.
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