首页> 美国卫生研究院文献>Cancer Science >Cytokines Induce Uridine Phosphorylase in Mouse Colon 26 Carcinoma Cells and Make the Cells More Susceptible to 5′‐Deoxy‐5‐fluorouridine
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Cytokines Induce Uridine Phosphorylase in Mouse Colon 26 Carcinoma Cells and Make the Cells More Susceptible to 5′‐Deoxy‐5‐fluorouridine

机译:细胞因子在小鼠结肠癌26细胞中诱导尿苷磷酸化酶并使细胞对5-脱氧-5-氟尿苷的敏感性更高

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摘要

The antiproliferative activity of 5‐fluorouracil (5‐FUra) and 5′‐deoxy‐5‐fluorouridine (5′‐dFUrd), used in combination with typical cytokines and growth factors, was investigated in mouse colon 26 carcinoma cells. Tumor necrosis factor α (TNFα), interleukin‐1a (IL‐1α), and interferon γ (IFNγ) at low doses showing < 50% inhibition of cell growth by themselves enhanced the susceptibility of the cells to the activity of 5′‐dFUrd. In particular, a mixture of these cytokines greatly enhanced the activity of 5′‐dFUrd and 5‐FUra by up to 12.4‐ and 2.7‐fold, respectively, whereas the activity of other cytostatics was only slightly changed (< 1.5‐fold). Basic fibroblast growth factor also increased the susceptibility, but only to 5′‐dFUrd. This preferential enhancement of the activity of 5′‐dFUrd would be due to induction by the cytokines of uridine phosphorylase (Urd Pase), by which 5′‐dFUrd is converted to 5‐FUra. TNFα, IL‐1α, IFNγ, and a mixture of these factors increased the enzyme activity by up to 3.7‐fold in colon 26 cells. Consequently, the anabolism of 5′‐dFUrd to fluoronucleotides and the incorporation of 5‐FUra into RNA in colon 26 cells were increased by TNFα treatment. In addition, the increase by the cytokine mixture in the susceptibility to 5′‐dFUrd was abolished by an inhibitor of Urd Pase, 2,2′‐anhydro‐5‐ethyluridine. These results indicate that induction of Urd Pase activity by cytokines is a critical event that increases the susceptibility to 5′‐dFUrd.
机译:在小鼠结肠癌26癌细胞中研究了5-氟尿嘧啶(5-FUra)和5'-脱氧-5-氟尿苷(5'-dFUrd)与典型细胞因子和生长因子联合使用的抗增殖活性。低剂量的肿瘤坏死因子α(TNFα),白细胞介素-1a(IL-1α)和干扰素γ(IFNγ)自身对细胞生长的抑制作用小于50%,从而增强了细胞对5'-dFUrd活性的敏感性。特别是,这些细胞因子的混合物分别将5'-dFUrd和5-FUra的活性分别提高了12.4和2.7倍,而其他细胞抑制剂的活性仅稍有变化(<1.5倍)。碱性成纤维细胞生长因子也增加了敏感性,但仅增加到5'-dFUrd。 5'-dFUrd活性的这种优先增强归因于尿苷磷酸化酶(Urd Pase)的细胞因子诱导,从而将5'-dFUrd转化为5-FUra。 TNFα,IL-1α,IFNγ和这些因素的混合物在结肠26细胞中使酶活性提高了3.7倍。因此,通过TNFα处理,结肠26细胞中5'-dFUrd与氟核苷酸的合成代谢和RNA中5-FUra的掺入增加。此外,细胞因子混合物对5'-dFUrd敏感性的增加被Urd Pase抑制剂2,2'-脱水-5-乙基尿苷消除了。这些结果表明,细胞因子诱导Urd Pase活性是一个关键事件,它增加了对5'-dFUrd的敏感性。

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