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:A homodimeric IL-15 superagonist F4RLI with easy preparation, improved half-life, and potent antitumor activities.
A homodimeric IL-15 superagonist F4RLI with easy preparation, improved half-life, and potent antitumor activities.
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白细胞介素-15(IL-15)因其强大的免疫激活效应,是肿瘤免疫治疗中一个有前景的候选分子。目前有几种IL-15分子处于临床试验阶段,但面临半衰期短、循环不稳定或生产及质量控制过程复杂等不足。
本研究的目的是设计一种新型IL-15超激动剂以解决上述困难,我们构建了F4RLI,其由GS连接肽间隔的IgG4 Fc片段、可溶性IL-15 Rα(sIL-15Rα)和IL-15(N72D)组成。通过在HEK293E细胞中进行单质粒瞬时转染,成熟的F4RLI以同源二聚体形式分泌,并通过一步简便的protein A亲和层析纯化。F4RLI产物在体外能显著刺激人CD3 + CD8 + T细胞和NK细胞的增殖。
同时,与IL-15单体相比,F4RLI在小鼠体内分别将半衰期延长了约28倍,将IL-15暴露时间延长了约200倍。在体内,F4RLI大幅扩增了小鼠脾脏CD8 + T淋巴细胞,表明其在肿瘤免疫治疗中的潜力。
进一步研究表明,F4RLI与免疫检查点阻断剂atezolizumab联合治疗MC38小鼠肿瘤时通过增加肿瘤组织中CD8 + T细胞的百分比发挥了协同效应。
此外,F4RLI与血管生成抑制剂bevacizumab联合治疗在人HT-29异种移植小鼠模型中显著抑制了肿瘤生长。总体而言,我们的结果证明了一种同源二聚体IL-15超激动剂F4RLI,其在生产工艺和用于肿瘤免疫治疗的生物制药应用方面具有优势。关键点:• F4RLI 的同源二聚体结构便于其生产过程和质控。• 与 Fc 和 sIL-15Rα 融合使 IL-15 的血浆半衰期延长约 28 倍。• F4RLI 可与 PD-1/PD-L1 检查点抑制剂或血管生成抑制剂发挥协同抗肿瘤活性。
Interleukin-15 (IL-15) is a promising candidate for cancer immunotherapy due to its potent immune-activating effects. There are several IL-15 molecules currently in clinical trials but facing shortages of poor half-life, circulation instability, or complicated production and quality control processes. The aim of this study is to design a novel IL-15 superagonist to set out the above difficulties, and we constructed F4RLI consisting of the GS-linker spaced IgG4 Fc fragment, soluble IL-15 Rα (sIL-15Rα), and IL-15(N72D).
Using a single plasmid transient transfection in HEK293E cells, the matured F4RLI was secreted in the form of homodimer and got purified by an easy step of protein A affinity chromatography. The F4RLI product can significantly stimulate the proliferation of human CD3 + CD8 + T cells and NK cells in vitro.
Meanwhile, F4RLI greatly extended the half-life and prolonged the exposure of IL-15 in mice nearly by 28- and 200-fold, respectively, in comparison with that of the IL-15 monomer. In vivo, F4RLI vastly expanded mouse splenic CD8 + T lymphocytes, illustrating its potential in tumor immunotherapy.
Further studies showed that the combination of F4RLI with the immune checkpoint blocker atezolizumab played a synergistic effect in treating MC38 mouse tumor by increasing the percentage of CD8 + T cells in tumor tissue.
Moreover, the combination therapy of F4RLI with the angiogenesis inhibitor bevacizumab resulted in significant tumor growth suppression in a xenograft human HT-29 mouse model.
Overall, our results demonstrate a homodimeric IL-15 superagonist F4RLI with advances in manufacturing processes and biopharmaceutical applications for cancer immunotherapy. KEY POINTS: • The homodimeric structure of F4RLI facilitates its easy production processes and quality control. • The fusion with Fc and sIL-15Rα extends the plasma half-life of IL-15 by about 28-fold. • F4RLI can play synergistic antitumor activity with the PD-1/PD-L1 checkpoint inhibitor or angiogenesis inhibitor.
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