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Immune checkpoint molecules in natural killer cells as potential targets for cancer immunotherapy

机译:免疫检查点分子在天然杀手细胞中作为癌症免疫疗法的潜在目标

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Recent studies have demonstrated the potential of natural killer (NK) cells in immunotherapy to treat multiple types of cancer. NK cells are innate lymphoid cells that play essential roles in tumor surveillance and control that efficiently kill the tumor and do not require the major histocompatibility complex. The discovery of the NK’s potential as a promising therapeutic target for cancer is a relief to oncologists as they face the challenge of increased chemo-resistant cancers. NK cells show great potential against solid and hematologic tumors and have progressively shown promise as a therapeutic target for cancer immunotherapy. The effector role of these cells is reliant on the balance of inhibitory and activating signals. Understanding the role of various immune checkpoint molecules in the exhaustion and impairment of NK cells when their inhibitory receptors are excessively expressed is particularly important in cancer immunotherapy studies and clinical implementation. Emerging immune checkpoint receptors and molecules have been found to mediate NK cell dysfunction in the tumor microenvironment; this has brought up the need to explore further additional NK cell-related immune checkpoints that may be exploited to enhance the immune response to refractory cancers. Accordingly, this review will focus on the recent findings concerning the roles of immune checkpoint molecules and receptors in the regulation of NK cell function, as well as their potential application in tumor immunotherapy.
机译:最近的研究表明,免疫疗法中的天然杀伤(NK)细胞治疗多种癌症的潜力。 NK细胞是先天淋巴细胞,其在肿瘤监测和控制中起重要作用,可有效杀死肿瘤,并且不需要主要的组织相容性复合物。作为对癌症的有希望治疗靶标的潜力的发现是对肿瘤学家的浮雕,因为它们面临着增加的化学抗性癌症的挑战。 NK细胞表现出抗固体和血液肿瘤的巨大潜力,并作为癌症免疫疗法的治疗靶标逐渐显示出来。这些细胞的效应作用是依赖于抑制和激活信号的平衡。了解各种免疫检查点分子在其抑制性受体过度表达时在NK细胞的耗尽和损伤中的作用在癌症免疫疗法研究和临床实施中尤为重要。已经发现出现的免疫检查点受体和分子在肿瘤微环境中介导NK细胞功能障碍;这使得需要探索进一步的额外的NK细胞相关免疫检查点,这些免疫检查点可能被剥削以增强对难治性癌症的免疫应答。因此,本综述将重点关注最近关于免疫检查点分子和受体在NK细胞功能调节中的作用的研究结果以及它们在肿瘤免疫疗法中的潜在应用。

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