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:DR5 CAR-NK cells demonstrate superior scalability and potent antitumor activity with favorable safety.
DR5 CAR-NK cells demonstrate superior scalability and potent antitumor activity with favorable safety.
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CAR-NK细胞是有前景的现货型肿瘤疗法,但合适靶点的稀缺阻碍了其发展。死亡受体5(DR5)因其在肿瘤上的选择性过表达及触发凋亡的能力而成为有吸引力的靶点。
然而,一个核心挑战是许多肿瘤对DR5介导的细胞死亡表现出固有耐药性,这阻碍了现有疗法的疗效。在此,我们从单克隆抗体3E7开发了一种新型DR5特异性嵌合抗原受体(CAR),该抗体结合人和鼠DR5而不与DR4交叉反应。用狒狒包膜假型慢病毒载体转导的原代自然杀伤(NK)细胞显示出稳定的CAR表达和强劲的扩增。
值得注意的是,培养物自我富集至接近100%的CAR阳性,我们将这一现象归因于选择性消除了表达DR5的衰老NK细胞,这些细胞充当了无意的饲养层细胞。在体外,工程化NK细胞通过直接细胞溶解和DR5介导的凋亡有效杀伤DR5+肿瘤细胞,即使在类耗竭条件下也是如此。在体内,它们在异种移植模型中抑制了肿瘤生长,尽管识别鼠DR5,但对正常组织未观察到明显毒性。
此外,它们对人肝类器官表现出可忽略的细胞毒性,凸显了良好的安全性特征。这些结果将DR5 CAR-NK细胞定位为一种有效、可扩展且安全的治疗策略,适用于DR5+肿瘤,包括那些对传统基于凋亡的疗法耐药的肿瘤。
CAR-NK cells are promising off-the-shelf tumor therapies, yet a scarcity of suitable targets hinders their development. Death receptor 5 (DR5) is an attractive target due to its selective overexpression on tumors and ability to trigger apoptosis. A central challenge, however, is that many tumors exhibit inherent resistance to DR5-mediated cell death, which has stymied the efficacy of existing therapies.
Here, we developed a novel DR5-specific chimeric antigen receptor (CAR) from the monoclonal antibody 3E7, which binds human and murine DR5 without cross-reacting to DR4. Primary natural killer (NK) cells transduced with baboon envelope-pseudotyped lentiviral vectors showed stable CAR expression and robust expansion.
Remarkably, the culture self-enriched to near 100% CAR positivity, a phenomenon we attribute to the selective elimination of DR5-expressing senescent NK cells that acted as inadvertent feeder cells. In vitro, the engineered NK cells potently killed DR5 + tumor cells through direct cytolysis and DR5-mediated apoptosis, even under exhaustion-like conditions. In vivo, they suppressed tumor growth in xenograft models without observable toxicity to normal tissues, despite their recognition of murine DR5.
Furthermore, they exhibited negligible cytotoxicity against human liver organoids, underscoring a favorable safety profile. These results position DR5 CAR-NK cells as a potent, scalable, and safe therapeutic strategy for DR5 + tumors, including those resistant to conventional apoptosis-based therapies.
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