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NF-kappa B-miR-155 axis activation mediates ovulation-induced oncogenic effects in fallopian tube epithelium

机译:NF-Kappa B-miR-155轴激活介导排卵诱导的输卵管上皮诱导的肿瘤作用

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摘要

The fallopian tube secretory epithelial cells (FTSECs) are the cell-of-origin of most high-grade serous ovarian carcinomas (HGSOC). FTSECs are repeatedly exposed to inflammation induced by follicular fluid (FF) that is released with every ovulation cycle throughout a woman's reproductive years. Uninterrupted ovulation cycles are an established risk factor for HGSOC. Stimuli present in the FF induce an inflammatory environment which may cause DNA damage eventually leading to serous tumorigenesis. With the aim of elucidating possible mechanistic pathways, we established an 'ex vivo persistent ovulation model' mimicking the repeated exposure of human benign fallopian tube epithelium (FTE) to FF. We performed mass spectrometry analysis of the secretome of the ex vivo cultures as well as confirmatory targeted expressional and functional analyses. We demonstrated activation of the NF-kappa B pathway and upregulation of miR-155 following short-term exposure of FTE to human FF. Increased expression of miR-155 was also detected in primary HGSOC tumors compared with benign primary human FTE and corresponded with changes in the expression of miR-155 target genes. The phenotype of miR-155 overexpression in FTSEC cell line is of increased migratory and altered adhesion capacities. Overall, activation of the NF-kappa B-miR-155 axis in FTE may represent a possible link between ovulation-induced inflammation, DNA damage, and transcriptional changes that may eventually lead to serious carcinogenesis.
机译:输卵管分泌上皮细胞(FTSEC)是大多数高级别浆液性卵巢癌(HGSOC)的起源细胞。FTSEC反复暴露于由卵泡液(FF)引起的炎症中,在女性生殖期的每个排卵周期都会释放FF。不间断排卵周期是HGSOC的既定风险因素。FF中存在的刺激物会诱导炎症环境,从而可能导致DNA损伤,最终导致浆液性肿瘤的发生。为了阐明可能的机制途径,我们建立了一个“体外持续排卵模型”,模拟人类良性输卵管上皮(FTE)反复暴露于FF。我们对体外培养的分泌组进行了质谱分析,并进行了确证性靶向表达和功能分析。我们证明了在FTE短期暴露于人类FF后NF-κB途径的激活和miR-155的上调。与良性原发性人类FTE相比,在原发性HGSOC肿瘤中也检测到miR-155表达增加,并与miR-155靶基因表达的变化相对应。FTSEC细胞系中miR-155过度表达的表型表现为迁移能力增加和粘附能力改变。总的来说,FTE中NF-κB-miR-155轴的激活可能代表排卵诱导的炎症、DNA损伤和可能最终导致严重癌变的转录变化之间的可能联系。

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  • 来源
    《Carcinogenesis》 |2020年第12期|共10页
  • 作者单位

    Chaim Sheba Med Ctr Sheba Canc Res Ctr Ramat Gan Israel;

    Tel Aviv Univ Dept Human Mol Genet &

    Biochem Sackler Fac Med Ramat Aviv Israel;

    Chaim Sheba Med Ctr Sheba Canc Res Ctr Ramat Gan Israel;

    Chaim Sheba Med Ctr Sheba Canc Res Ctr Ramat Gan Israel;

    Tel Aviv Univ Dept Human Mol Genet &

    Biochem Sackler Fac Med Ramat Aviv Israel;

    Chaim Sheba Med Ctr Dept Obstet &

    Gynecol IVF Unit Ramat Gan Israel;

    Tel Aviv Univ Sackler Fac Med Ramat Aviv Israel;

    Tel Aviv Univ Dept Human Mol Genet &

    Biochem Sackler Fac Med Ramat Aviv Israel;

    Chaim Sheba Med Ctr Sheba Canc Res Ctr Ramat Gan Israel;

    Chaim Sheba Med Ctr Sheba Canc Res Ctr Ramat Gan Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

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