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.
英文原题:iRGD-modified memory-like NK cells exhibit potent responses to hepatocellular carcinoma.
iRGD-modified memory-like NK cells exhibit potent responses to hepatocellular carcinoma.
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我们的研究结果表明,CIML NK 细胞在体外对 HCC 细胞系具有增强的效力和持久性。此外,我们发现将 iRGD 整合到 CIML NK 细胞中可促进对 MCSs 的增强浸润和靶向破坏。而且,应用 iRGD 修饰的 CIML NK 细胞在体内对 HCC 显示出显著的抗肿瘤疗效。
细胞因子诱导的记忆样自然杀伤(CIML NK)细胞已被发现具有强效抗肿瘤反应,并能在白血病患者中诱导完全缓解。然而,转移的NK细胞浸润不良是开发实体瘤过继细胞免疫疗法的主要障碍。在我们的研究中,我们探索了使用肿瘤穿透肽iRGD将活化的CIML NK细胞递送至肿瘤组织深部的潜力。
在短暂刺激IL-12、IL-15和IL-18后,通过流式细胞术评估了CIML NK细胞的表型和功能。通过共聚焦显微镜揭示了iRGD修饰的CIML NK细胞在肿瘤球体中的穿透和杀伤能力。在肝细胞癌(HCC)异种移植小鼠模型中测试了这些修饰的CIML NK细胞的抗肿瘤疗效。
用细胞因子处理NK细胞可导致其显著活化,这一点通过CD25和CD137的上调得到证实。在静息6天后,CIML NK细胞在靶向HepG2和SK-Hep-1 HCC细胞系时仍能表现出强活化。此外,CIML NK细胞产生更多细胞因子(干扰素-γ和肿瘤坏死因子α),并对HCC细胞系表现出增强的细胞毒性。iRGD修饰使CIML NK细胞能够浸润多细胞球体(MCSs),并因此诱导针对靶癌细胞的细胞毒性。此外,经iRGD修饰的CIML NK细胞在HCC异种移植小鼠模型中显著降低了肿瘤生长。
Cytokine-induced memory-like natural killer (CIML NK) cells have been found to possess potent antitumor responses and induce complete remissions in patients with leukemia. However, the poor infiltration of transferred NK cells is a major obstacle in developing adoptive cell immunotherapy for solid tumors. In our study, we explored the potential of using the tumor-penetrating peptide iRGD to deliver activated CIML NK cells deep into tumor tissues.
After being briefly stimulated with interleukin-12 (IL-12), IL-15, and IL-18, CIML NK cells were assessed for their phenotype and function with flow cytometry. The penetrating and killing capability of iRGD-modified CIML NK cells in tumor spheroids was revealed by confocal microscopy. The anti-tumor efficacy of these modified CIML NK cells was tested in hepatocellular carcinoma (HCC) xenograft mouse models.
Treating NK cells with cytokines led to a substantial activation, which was evidenced by the upregulation of CD25 and CD137. After a resting period of six days, CIML NK cells were still able to display strong activation when targeting HepG2 and SK-Hep-1 HCC cell lines. Additionally, CIML NK cells produced increased amounts of cytokines (interferon-gamma and tumor necrosis factor alpha) and exhibited heightened cytotoxicity towards HCC cell lines. The iRGD modification enabled CIML NK cells to infiltrate multicellular spheroids (MCSs) and, consequently, to induce cytotoxicity against the target cancer cells. Moreover, the CIML NK cells modified with iRGD significantly decreased tumor growth in a HCC xenograft mouse model.
Our findings demonstrate that CIML NK cells possess augmented potency and durability against HCC cell lines in vitro. Additionally, we have seen that the incorporation of iRGD to CIML NK cells facilitates enhanced infiltration and targeted destruction of MCSs. Moreover, the application of iRGD-modified CIML NK cells reveal remarkable anti-tumor efficacy against HCC in vivo.
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