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Ferroptosis involves in intestinal epithelial cell death in ulcerative colitis

机译:脱裂化涉及溃疡性结肠炎的肠上皮细胞死亡

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Ferroptosis has recently emerged as an iron-dependent form of nonapoptotic cell death, which is also a regulated necrosis process and a response to tumor suppression. However, whether ferroptosis is involved in ulcerative colitis (UC) is unknown. The aims of this study were to investigate whether the ferroptosis is involved in UC, particularly intestinal epithelial cell (IEC) death, and to analyze the effect of the nuclear factor kappa Bp65 subunit (NF-κBp65) on ferroptosis. The gene expression of ferroptosis-related proteins was assessed in intestinal mucosal samples from human UC. The experimental model of UC was induced with dextran sulfate sodium (DSS). Ferroptosis of IECs was evaluated, the effect of NF-κBp65 on ferroptosis was analyzed by using IEC-specific NF-κBp65-deleted mice (p65IEC-KO), and the ferroptosis signaling pathway was investigated in vitro and in vivo. The results showed that ferroptosis was significantly induced in the IECs from UC patients and mice with colitis, and the ferroptosis was mediated by endoplasmic reticulum (ER) stress signaling. The specific deletion of IEC NF-κBp65 clearly upregulated ferroptosis and exacerbated colitis, and the result showed that phosphorylated-NF-κBp65 significantly inhibited ER stress signaling by directly binding eukaryotic initiation factor 2α. These data indicate that ferroptosis contributes to UC via ER stress-mediated IEC cell death, and that NF-κBp65 phosphorylation suppresses ER stress-mediated IEC ferroptosis to alleviate UC. The results suggest that ferroptosis involves in IEC death in UC, NF-κBp65 play a critical role in the ferroptotic inhibition, and ferroptosis is a potential therapeutic target for UC.
机译:最近脱毛为依赖性缺氧细胞死亡的铁依赖性,这也是对肿瘤抑制的受调节坏死过程和反应。但是,是否参与溃疡性结肠炎(UC)的脱裂病是未知的。本研究的目的是研究糖凋亡是否参与UC,特别是肠上皮细胞(IEC)死亡,并分析核因子Kappa BP65亚基(NF-κBP65)对硬化症的影响。在来自人UC的肠粘膜样品中评估了与脱叶病相关蛋白质的基因表达。用葡聚糖硫酸钠(DSS)诱导UC的实验模型。评价IECS的脱裂病,通过使用IEC特异性NF-κBP65缺失的小鼠(P65IEC-KO)分析NF-κBP65对硬质裂菌的影响,并在体外和体内进行裂解菌信号通路。结果表明,在UC患者和团结的IEC中显着诱导了脱裂病,并且通过内质网(ER)应力信号传导介导的硬质裂解。 IEC NF-κBP65的特异性缺失明显上调的裂解子和显硬性结肠炎,结果表明,通过直接结合真核引发因子2α,磷酸化-NF-κBP65显着抑制ER应力信号。这些数据表明,恶性凋亡通过ER应激介导的IEC细胞死亡导致UC,并且NF-κBP65磷酸化抑制了ER应激介导的IEC硬化以缓解UC。结果表明,裂解麻死涉及UC中的IEC死亡,NF-κBP65在枯萎病抑制中发挥着关键作用,并且Ferr凋亡是UC的潜在治疗靶标。

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