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:Boosting tumor homing of endogenous natural killer cells via therapeutic secretomes of chemically primed natural killer cells.
Boosting tumor homing of endogenous natural killer cells via therapeutic secretomes of chemically primed natural killer cells.
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Chem_NK 分泌组通过教育其他 NK 细胞,有效增强 NK 细胞的肿瘤归巢能力并放大抗肿瘤疗效。这些发现为活化 NK 细胞介导的免疫通讯提供了新的见解,并凸显了 NK 细胞来源分泌组在癌症治疗中的治疗潜力。
自然杀伤(NK)细胞通过分泌可溶性因子(包括趋化性细胞因子)在调节免疫反应中发挥关键作用。我们先前的研究证明,Chem_NK 具有强效抗肿瘤活性,Chem_NK 是指经 25 kDa 支化聚乙烯亚胺化学预处理的 NK 细胞。然而,Chem_NK 分泌组教育其他 NK 细胞并增强其肿瘤归巢能力的潜力仍未得到探索。
采用体外实验,通过检测趋化因子受体表达及向癌细胞的迁移,评估 Chem_NK 条件培养基(Chem CM)对 NK 细胞的影响。在体内,使用异种移植和同系小鼠肿瘤模型评估 Chem_NK 和 Chem CM 对内源性 NK 细胞群的影响。进行细胞因子芯片和信号分析,以鉴定 Chem_NK 分泌的因子及其在激活受体 NK 细胞中的作用。
Chem CM 在体外有效教育了 NK 细胞,增强趋化因子受体表达并改善其向癌细胞的迁移。在体内,过继转移的 Chem_NK 增加了异种移植瘤内的内源性 NK 细胞群体。此外,将 Chem CM 直接注射到同系小鼠肿瘤模型中,显著促进了内源性 NK 细胞向肿瘤的浸润,并抑制了肺转移。细胞因子分析显示,Chem_NK 分泌高水平细胞因子,这些细胞因子激活了受体 NK 细胞中的 ERK1/2 信号传导,导致趋化因子受体上调。
Natural killer (NK) cells play a critical role in modulating immune responses by secreting soluble factors, including chemotactic cytokines. Our previous study demonstrated the potent antitumor activity of Chem_NK, referring to NK cells chemically primed with 25 kDa branched polyethyleneimine. However, the potential of Chem_NK secretomes to educate other NK cells and enhance their tumor-homing ability remains unexplored.
The effects of Chem_NK conditioned media (Chem CM) on NK cells were evaluated in vitro by examining chemokine receptor expression and migration toward cancer cells. In vivo, the impact of Chem_NK and Chem CM on endogenous NK cell populations was assessed using xenograft and syngeneic mouse tumor models. Cytokine array and signaling analyses were performed to identify factors secreted by Chem_NK and their role in activating recipient NK cells.
Chem CM effectively educated NK cells in vitro, enhancing chemokine receptor expression and improving their migration toward cancer cells. In vivo, adoptively transferred Chem_NK increased endogenous NK cell populations within xenograft tumors. Furthermore, direct injection of Chem CM into a syngeneic mouse tumor model significantly promoted endogenous NK cell infiltration into tumors and suppressed lung metastasis. Cytokine analysis revealed that Chem_NK secreted high levels of cytokines, which activated ERK1/2 signaling in recipient NK cells, leading to upregulation of chemokine receptors.
Chem_NK secretomes effectively enhance the tumor-homing ability of NK cells and amplify antitumor efficacy by educating other NK cells. These findings offer novel insights into activated NK cell-mediated immune communication and highlight the therapeutic potential of NK cell-derived secretomes in cancer therapy.
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