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:Adherent Natural Killer Cells De Novo Express IL-2Rα and Sustain Long-Lasting, Potent Anti-Tumor Activity in Picomolar Concentrations of IL-2.
Adherent Natural Killer Cells De Novo Express IL-2Rα and Sustain Long-Lasting, Potent Anti-Tumor Activity in Picomolar Concentrations of IL-2.
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自然杀伤(NK)细胞是先天淋巴样细胞(ILC),在免疫监视和免疫调节中发挥关键作用。它们构成一个异质性群体,包括三个主要亚群:NK1(细胞毒性)、NK2(调节性)和NK3(适应性)。在白细胞介素-2(IL-2)刺激下,NK3细胞分化为黏附NK(A-NK)细胞,后者表现出强效抗肿瘤活性。人A-NK细胞是通过在纳摩尔(nM)IL-2浓度下对外周血NK3细胞进行预刺激和基于黏附的选择,随后在相同IL-2条件下进行长时间再刺激和培养而生成的。
然而,这些A-NK细胞终末分化、对IL-2无反应、易发生凋亡,并且在癌症治疗中无效。在此,我们报告了A-NK细胞此前未被认识到的生理特性,并描述了一种体外生成它们的新策略。
具体而言,我们证明,用nM IL-2浓度预刺激的A-NK细胞从头表达高亲和力IL-2受体(IL-2R)。随后转移至皮摩尔(pM)IL-2浓度后,这些细胞在长期培养中经历持续而旺盛的增殖,并保持强效抗肿瘤活性。这些发现强调了NK3细胞的功能可塑性,表明nM IL-2预刺激可重编程它们,使其在pM IL-2中作为高效抗肿瘤效应细胞有效发挥作用。这种由细胞因子介导的NK3细胞重编程提供了一种具有生理相关性的策略,用于生成IL-2依赖性降低的完全功能性治疗性NK细胞。该方法为推进基于NK细胞的癌症免疫治疗提供了一个有前景的途径。
Natural killer (NK) cells are innate lymphoid cells (ILCs) that play key roles in immunosurveillance and immunoregulation. They constitute a heterogeneous population comprising three principal subpopulations: NK1 (cytotoxic), NK2 (regulatory), and NK3 (adaptive).
In response to interleukin-2 (IL-2) stimulation, NK3 cells differentiate into adherent NK (A-NK) cells, which exhibit potent anti-tumor activity. Human A-NK cells are generated by priming and adherence-based selection of peripheral blood NK3 cells in nanomolar (nM) IL-2 concentrations, followed by prolonged restimulation and culture in the same IL-2 conditions.
However, these A-NK cells are terminally differentiated, unresponsive to IL-2, prone to apoptosis, and are ineffective in cancer therapy.
Here, we report previously unrecognized physiological properties of A-NK cells and describe a novel strategy for their in vitro generation. Specifically, we demonstrate that A-NK cells primed with nM IL-2 concentrations de novo express the high-affinity IL-2 receptor (IL-2R ). Upon subsequent transfer to picomolar (pM) IL-2 concentrations, these cells undergo sustained vigorous proliferation and retain robust anti-tumor activity in long-term cultures.
These findings underscore the functional plasticity of NK3 cells, demonstrating that nM IL-2 priming can reprogram them to function efficiently in pM IL-2 as highly effective anti-tumor effectors. This cytokine-mediated reprogramming of NK3 cells provides a physiologically relevant strategy for generating fully functional therapeutic NK cells with reduced IL-2 dependency. This approach offers a promising venue for advancing NK cell-based cancer immunotherapies.
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