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:Evaluation of NF-kB Nuclear Translocation in Natural Killer Cells by Imaging Multispectral Flow Cytometry as a Marker of Anticancer Immune Activation.
Evaluation of NF-kB Nuclear Translocation in Natural Killer Cells by Imaging Multispectral Flow Cytometry as a Marker of Anticancer Immune Activation.
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先天免疫具有强效抗肿瘤功能,是癌症免疫监视的第一道防线。自然杀伤(NK)细胞是先天免疫最重要的效应细胞之一,其细胞毒活性由活化和抑制性受体介导的信号所决定,这些受体可识别癌细胞上的配体。
值得注意的是,NK细胞在抗癌治疗疗效中发挥关键作用,例如通过抗体依赖性细胞介导的细胞毒作用参与单克隆抗体治疗。此外,紫杉烷类等某些化疗药物可调节NK细胞功能。
因此,评估NK细胞活化状态,对于监测治疗应答和优化治疗策略以改善患者结局均非常有用。通常通过流式细胞术检测穿孔素、颗粒酶等标志物或细胞毒活性来评估NK细胞功能,但这些指标反映的是NK细胞活化的晚期终点。
在此背景下,NF-κB是包括NK细胞在内的多种免疫细胞促炎基因表达的重要介质。活化后,NF-κB p65亚基从细胞质转位至细胞核,促进穿孔素、颗粒酶和干扰素-γ等基因转录。
因此,检测该转录因子的核转位,是研究免疫效应细胞启动的一种有价值策略。本章介绍一种成像多光谱流式细胞术检测方法,可通过评估NK细胞中NF-κB p65核转位,作为抗癌免疫活化标志。
Innate immunity has a potent antitumor function and occurs as the first line of defense in cancer immunosurveillance. Natural killer (NK) cells are one of the most important effectors of innate immunity and exert their cytotoxic activity as a result of signals mediated by activating and inhibitory receptors able to recognize ligands on cancer cells. Of note, NK cells play a pivotal role in the efficacy of anticancer therapies, as those employing monoclonal antibodies, by mediating antibody-dependent cell cytotoxicity.
Additionally, some types of chemotherapeutics, such as taxanes, can modulate NK cell function.
Thus, evaluating the activation state of NK cells is crucially useful for both monitoring the response to therapy and optimizing therapeutic strategies for improving patient's outcome. NK cell function is usually assessed by flow cytometry assays evaluating markers like perforin and granzyme or cytotoxic activity, which, however, represent late end point measures of NK cell activation.
In this context, NF-kB represents an important mediator of pro-inflammatory gene expression in several immune cells, including NK cells. Upon activation, the NF-kB p65 subunit translocates from the cytoplasm to the nucleus and promotes the transcription of various genes, as those encoding for perforin, granzyme, and interferon-gamma.
Therefore, assessing the nuclear translocation of this transcription factor represents a valuable strategy to study the triggering of immune effectors. In this chapter, we describe an imaging multispectral flow cytometry assay able to evaluate the nuclear translocation of the NF-kB p65 in NK cells as a marker of anticancer immune activation.
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