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:Natural killer cell-based strategies for immunotherapy of cancer.
Natural killer cell-based strategies for immunotherapy of cancer.
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自然杀伤(NK)细胞是一类淋巴细胞,具有天然杀伤受感染、受损或恶性转化细胞的能力。由于这些细胞是固有免疫的一部分,其细胞毒性机制在识别特定模式后即被激活,无需预先抗原致敏。这种识别对于NK细胞维持稳态和免疫监视的功能至关重要。NK细胞不仅直接作用于恶性细胞,还通过产生细胞因子或与其他免疫细胞交互参与复杂的免疫应答。癌症可被视为所有免疫防御的崩溃,此时恶性细胞逃避免疫并侵入周围组织,形成支持肿瘤进展的微环境。这一过程可通过免疫治疗干预免疫应答来逆转,从而可能恢复免疫识别。NK细胞是免疫治疗的重要效应细胞。它们可用于过继性细胞转移、经嵌合抗原受体基因修饰,或通过适当抗体及其他专为NK细胞衔接设计的抗体片段重组治疗蛋白触发。负责靶标识别和细胞毒性应答激活的NK细胞受体也可作为免疫治疗的靶点,例如通过多种双特异性、三特异性或多特异性融合蛋白设计,桥接受靶细胞上的肿瘤标志物与NK细胞上表达的激活受体之间的间隙。
然而,这类免疫活性治疗药物的开发,只有在对NK细胞受体-配体相互作用具备深入的功能和结构认识时才能实现。本综述描述了NK细胞免疫治疗这一引人入胜的蛋白质工程领域的最新进展。
Natural killer (NK) cells are a family of lymphocytes with a natural ability to kill infected, harmed, or malignantly transformed cells. As these cells are part of the innate immunity, the cytotoxic mechanisms are activated upon recognizing specific patterns without prior antigen sensitization. This recognition is crucial for NK cell function in the maintenance of homeostasis and immunosurveillance. NK cells not only act directly toward malignant cells but also participate in the complex immune response by producing cytokines or cross-talk with other immune cells. Cancer may be seen as a break of all immune defenses when malignant cells escape the immunity and invade surrounding tissues creating a microenvironment supporting tumor progression.
This process may be reverted by intervening immune response with immunotherapy, which may restore immune recognition. NK cells are important effector cells for immunotherapy. They may be used for adoptive cell transfer, genetically modified with chimeric antigen receptors, or triggered with appropriate antibodies and other antibody-fragment-based recombinant therapeutic proteins tailored specifically for NK cell engagement.
NK cell receptors, responsible for target recognition and activation of cytotoxic response, could also be targeted in immunotherapy, for example, by various bi-, tri-, or multi-specific fusion proteins designed to bridge the gap between tumor markers present on target cells and activation receptors expressed on NK cells.
However, this kind of immunoactive therapeutics may be developed only with a deep functional and structural knowledge of NK cell receptor: ligand interactions. This review describes the recent developments in the fascinating protein-engineering field of NK cell immunotherapeutics.
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