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首页> 外文期刊>BMC Cancer >The PI3K/Akt pathway upregulates Id1 and integrin α4 to enhance recruitment of human ovarian cancer endothelial progenitor cells
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The PI3K/Akt pathway upregulates Id1 and integrin α4 to enhance recruitment of human ovarian cancer endothelial progenitor cells

机译:PI3K / Akt通路上调Id1和整联蛋白α4以增强人卵巢癌内皮祖细胞的募集

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Background Endothelial progenitor cells (EPCs) contribute to tumor angiogenesis and growth. We aimed to determine whether inhibitors of differentiation 1 (Id1) were expressed in circulating EPCs of patients with ovarian cancer, whether Id1 could mediate EPCs mobilization and recruitment, and, if so, what underlying signaling pathway it used. Methods Circulating EPCs cultures were from 25 patients with ovarian cancer and 20 healthy control subjects. Id1 and integrin α4 expression were analyzed by real-time reverse transcription-polymerase chain reaction and western blot. EPCs proliferation, migration, and adhesion were detected by MTT, transwell chamber, and EPCs-matrigel adhesion assays. Double-stranded DNA containing the interference sequences were synthesized according to the structure of a pGCSIL-GFP viral vector and then inserted into a linearized vector. Positive clones were identified as lentiviral vectors that expressed human Id1 short hairpin RNA (shRNA). Results Id1 and integrin α4 expression were increased in EPCs freshly isolated from ovarian cancer patients compared to those obtained from healthy subjects. siRNA-mediated Id1 downregulation substantially reduced EPCs function and integrin α4 expression. Importantly, Inhibition of PI3K/Akt inhibited Id1 and integrin α4 expression, resulting in the decreasing biological function of EPCs. Conclusions Id1 induced EPCs mobilization and recruitment is mediated chiefly by the PI3K/Akt signaling pathway and is associated with activation of integrin α4.
机译:背景内皮祖细胞(EPC)有助于肿瘤血管生成和生长。我们旨在确定在卵巢癌患者的循环EPC中是否表达了分化抑制剂1(Id1),Id1是否可以介导EPC的动员和募集,以及是否使用了其潜在的信号通路。方法循环EPCs培养来自25例卵巢癌患者和20例健康对照者。通过实时逆转录-聚合酶链反应和蛋白质印迹分析Id1和整联蛋白α4表达。通过MTT,transwell室和EPCs-matrigel粘附测定法检测EPC的增殖,迁移和粘附。根据pGCSIL-GFP病毒载体的结构合成含有干扰序列的双链DNA,然后插入线性化载体中。阳性克隆被鉴定为表达人Id1短发夹RNA(shRNA)的慢病毒载体。结果与健康受试者相比,新鲜分离自卵巢癌患者的EPC中Id1和整联蛋白α4表达增加。 siRNA介导的Id1下调显着降低了EPC功能和整联蛋白α4表达。重要的是,PI3K / Akt的抑制会抑制Id1和整联蛋白α4的表达,从而导致EPC的生物学功能下降。结论Id1诱导的EPC的动员和募集主要通过PI3K / Akt信号通路介导,并与整联蛋白α4的激活有关。

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