工程化益生菌用于肿瘤靶向联合化学免疫治疗
Engineered probiotics for tumor-targeted combination chemoimmunotherapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:An engineered α1β1 integrin-mediated FcγRI signaling component to control enhanced CAR macrophage activation and phagocytosis.
An engineered α1β1 integrin-mediated FcγRI signaling component to control enhanced CAR macrophage activation and phagocytosis.
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实体瘤的治疗仍然困难,因此人们越来越关注嵌合抗原受体巨噬细胞(CAR-M)以挑战实体瘤。然而,过继细胞疗法的CAR结构域设计会导致抗肿瘤活性差异并触发抗肿瘤潜力,而这一点在巨噬细胞中仍知之甚少。
我们开发了一种α1β1整合素介导的Fc-gamma受体I(FcγRI)信号组件,用于CAR-M的特异性激活及其抗肿瘤潜力。
我们在体外评估了具有α1β1整合素介导的FcγRI信号传导的CAR-M(ACT CAR-M)对巨噬细胞活化和抗肿瘤吞噬反应的影响。使用BALB/c小鼠皮下肿瘤模型和免疫缺陷小鼠癌病模型,测试ACT CAR-M与CD3ζ CAR-M相比的抗肿瘤效果。在原代人巨噬细胞中,α1β1整合素介导的FcγRI信号传导参与CAR-M与增强的巨噬细胞活化和特异性吞噬作用相关,并且与CD3ζ CAR-M相比,在多种癌症模型中显著改善了肿瘤控制和生存。RNA测序提示,α1β1整合素介导的FcγRI参与通过增强促炎M1表型相关通路(如Toll样受体信号传导、肿瘤坏死因子信号传导和IL-17信号传导)来增加抗肿瘤免疫。α1β1整合素介导的FcγRI信号传导参与显著增强了CAR-M免疫疗法的抗肿瘤效果,这被提出作为一种先进的工程化CAR结构域材料,以扩大CAR-M的临床应用。
Treatment of solid tumors remains difficult, and therefore there has been increased focus on chimeric antigen receptor macrophages (CAR-M) to challenge solid tumors.
However, CAR domain design of of adoptive cell therapy, which leads to differences in antitumor activity and triggered antitumor potential, remains poorly understood for macrophages.
We developed an α1β1 integrin-mediated Fc-gamma receptor I (FcγRI) signaling component for CAR-M specific activation and its antitumor potential.
We evaluated CAR-M effects with α1β1 integrin-mediated FcγRI signaling (ACT CAR-M) on the activation and antitumor phagocytic response of macrophages in vitro. Subcutaneous tumor model in BALB/c mice and carcinomatosis model in immunodeficient mice were used to test the antitumor effect of ACT CAR-M compared with CD3ζ CAR-M. The α1β1 integrin-mediated FcγRI signaling engagement of CAR-M was associated with enhanced macrophage activation and specific phagocytosis in primary human macrophages, and significantly improved tumor control and survival in multiple cancer models when compared to CD3ζ CAR-M.
RNA-sequencing suggested that α1β1 integrin-mediated FcγRI engagement increased antitumor immunity by enhancing pro-inflammatory M1 phenotype-associated pathways, such as Toll-like receptor signaling, tumor necrosis factor signaling, and IL-17 signaling. α1β1 integrin-mediated FcγRI signaling engagement markedly enhanced antitumor effects of CAR-M immunotherapy, which is proposed as an advanced engineering CAR domain material to expand the clinical application of CAR-M.
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