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Iron chelators increase the resistance of Ataxia telangeictasia cells to oxidative stress.

机译:铁螯合剂增加了共济失调毛细血管扩张细胞对氧化应激的抵抗力。

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摘要

Ataxia telangeictasia (A-T) is an autosomal recessive disorder characterized by immune dysfunction, genomic instability, chronic oxidative damage, and increased cancer incidence. Previously, desferal was found to increase the resistance of A-T, but not normal cells to exogenous oxidative stress in the colony forming-efficiency assay, suggesting that iron metabolism is dysregulated in A-T. Since desferal both chelates iron and modulates gene expression, we tested the effects of apoferritin and the iron chelating flavonoid quercetin on A-T cell colony-forming ability. We demonstrate that apoferritin and quercetin increase the ability of A-T cells to form colonies. We also show that labile iron levels are significantly elevated in Atm-deficient mouse sera compared to syngeniec wild type mice. Our findings support a role for labile iron acting as a Fenton catalyst in A-T, contributing to the chronic oxidative stress seen in this disease. Our findings further suggest that iron chelators might promote the survival of A-T cells and hence, individuals with A-T.
机译:失语症共济失调(A-T)是一种常染色体隐性遗传疾病,其特征在于免疫功能低下,基因组不稳定,慢性氧化损伤和增加的癌症发病率。以前,在菌落形成效率测定中发现延缓会增加A-T的抵抗力,但不会增加正常细胞对外源氧化应激的抵抗力,这表明A-T中铁代谢失调。由于desferal螯合铁并调节基因表达,因此我们测试了载铁蛋白和铁螯合类黄酮槲皮素对A-T细胞集落形成能力的影响。我们证明载铁蛋白和槲皮素增加了A-T细胞形成菌落的能力。我们还显示,与同基因野生型小鼠相比,Atm缺陷小鼠血清中的不稳定铁水平显着提高。我们的发现支持不稳定铁在A-T中充当Fenton催化剂的作用,导致该疾病中出现的慢性氧化应激。我们的发现进一步表明,铁螯合剂可能会促进A-T细胞的存活,从而促进具有A-T的个体的存活。

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