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Antioxidant responses of cortex neurons to iron loading

机译:皮质神经元对铁负荷的抗氧化反应

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Brain cells have a highly active oxidative metabolism, yet they contain only low to moderate superoxide dismutase and catalase activities. Thus, their antioxidant defenses rely mainly on cellular reduced glutathione levels. In this work, in cortical neurons we characterized viability and changes in reduced and oxidized glutathione levels in response to a protocol of iron accumulation. We found that massive death occurred after 2 days in culture with 10 mM Fe. Surviving cells developed an adaptative response that included increased synthesis of GSH and the maintenance of a glutathione-based reduction potential. These results highlight the fundamental role of glutathione homeostasis in the antioxidant response and provide novel insights into the adaptative mechanisms of neurons subjected to progressive iron loads.
机译:脑细胞具有高活性的氧化代谢,但它们仅包含低至中等的超氧化物歧化酶和过氧化氢酶活性。因此,它们的抗氧化防御主要依靠细胞减少的谷胱甘肽水平。在这项工作中,我们在皮层神经元中表征了活力以及响应铁蓄积方案而降低和氧化的谷胱甘肽水平的变化。我们发现在含有10 mM Fe的培养2天后发生大量死亡。存活的细胞产生了适应性反应,包括增加的GSH合成和维持基于谷胱甘肽的还原电位。这些结果突出了谷胱甘肽稳态在抗氧化反应中的基本作用,并为神经元适应进行性铁负荷的适应机制提供了新的见解。

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