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Investigations of the causes and effects of increased arachidonic 12-lipoxygenase metabolite levels in an intestinal epithelial cell culture model.

机译:在肠道上皮细胞培养模型中花生四烯酸12-脂氧合酶代谢产物水平升高的原因和影响的研究。

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摘要

Background. Arachidonate 12-lipoxygenase (ALOX15) introduces a molecular oxygen at carbon 12 of arachidonic acid to generate a 12-hydroperoxy eicosatetraeneoic acid (12HpETE) and related derivatives which have significant biological activity. Although the structures and enzymatic properties of ALOX15 have been elucidated, the physiological roles of ALOX15 are not yet fully understood.;There is evidence that iron deficiency induces ALOX15 expression in rat gastrointestinal mucosa. Gene expression profiles using microarray analysis indicate that ALOX15 mRNA is upregulated in both dietary and genetic iron-deficiency rat models and increased ALOX15 protein and metabolite levels have been demonstrated to coincide with morphological changes in the GI epithelium. The signal(s) which induces these events are unclear and may be a direct result of iron deficiency or may be a secondary mechanism such as hypoxia induced by iron deficiency anemia. Rat GI mucosa is a complex tissue and detailed examination of possible mechanisms in the rat model is difficult. The focus of this thesis is to employ an intestinal epithelial cell (IEC-6) culture model to explore potential signals leading to the induction of ALOX15: iron deficiency and hypoxia; and to investigate the effects of the major ALOX15 metabolite, 12 hydroxy-octadecadieneoic acid (12-HETE), on IEC-6 cell proliferation and differentiation.;Methods. IEC-6 cells were made iron deficient with 0.25-1.0 mmol/L deferoxamine (DFO); an iron chelator) or hypoxic in a 1% O2 environment. ALOX15 induction was screened by analysis of cell lysate 12-HETE levels by HPLC. Cell counts and MTT assay were used to assess the effects of 12-HETE on pre-confluent IEC-6 cell proliferation. Microscopic western blue dye deposition and cellular alkaline phosphatase enzyme kinetic assay were used as markers to assess the effects of 12--HETE on post-confluent IEC-6 cell differentiation.;Results. Cellular total iron assay indicated a 50% reduction in cellular iron levels after DFO treatment without a significant difference in cell growth. HPLC analysis of cell lysate and conditioned media 12-HETE levels showed no increases in levels in DFO or hypoxia treated cells. Treatment of IEC-6 cells with 0.31 nm 12-HETE resulted in significantly increased proliferation rate and differentiation as measured by alkaline phosphatase activity markers.;Conclusion. Neither iron chelation nor hypoxia appear to induce production of ALOX15 metabolites in IEC-6 cells however treatment of IEC-6 cells with 12-HETE induces both increased cell proliferation and differentiation.
机译:背景。花生四烯酸12-脂加氧酶(ALOX15)在花生四烯酸的碳12处引入分子氧以产生具有显着生物学活性的12-氢过氧二十碳四烯酸(12HpETE)和相关衍生物。尽管已经阐明了ALOX15的结构和酶学性质,但是还没有完全了解ALOX15的生理作用。有证据表明铁缺乏诱导大鼠胃肠道粘膜中ALOX15的表达。使用微阵列分析的基因表达谱表明,ALOX15 mRNA在饮食和遗传铁缺乏大鼠模型中均上调,并且已证明ALOX15蛋白和代谢产物水平升高与GI上皮的形态变化相吻合。导致这些事件的信号尚不清楚,可能是铁缺乏症的直接结果,也可能是继发性机制,例如由铁缺乏症引起的缺氧。大鼠胃肠粘膜是一个复杂的组织,很难对大鼠模型中的可能机制进行详细检查。本文的重点是采用肠上皮细胞(IEC-6)培养模型来探索导致ALOX15诱导的潜在信号:铁缺乏和缺氧。并研究主要的ALOX15代谢产物12羟基十八碳二烯酸(12-HETE)对IEC-6细胞增殖和分化的影响。用0.25-1.0 mmol / L去铁胺(DFO)使IEC-6细胞缺铁;铁螯合剂)或在1%O2环境中低氧。通过HPLC分析细胞裂解物12-HETE水平筛选了ALOX15诱导。细胞计数和MTT测定法用于评估12-HETE对融合前IEC-6细胞增殖的影响。显微Western蓝色染料沉积和细胞碱性磷酸酶动力学分析用作标记,以评估12-HETE对融合后IEC-6细胞分化的影响。细胞总铁含量测定表明DFO处理后细胞铁含量降低了50%,而细胞生长无明显差异。对细胞裂解液和条件培养基12-HETE的HPLC分析显示,DFO或低氧处理的细胞中的水平没有增加。用碱性磷酸酶活性标志物测量,用0.31 nm 12-HETE处理IEC-6细胞可显着提高增殖速率和分化。铁螯合或低氧似乎都不会诱导IEC-6细胞中ALOX15代谢产物的产生,但是用12-HETE处理IEC-6细胞既能诱导细胞增殖,又能诱导分化。

著录项

  • 作者

    Cherian, Mayjoe.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Chemistry Biochemistry.
  • 学位 M.S.
  • 年度 2010
  • 页码 55 p.
  • 总页数 55
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:19

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