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首页> 外文期刊>Molecules >Phosphorylation of Akt by SC79 Prevents Iron Accumulation and Ameliorates Early Brain Injury in a Model of Experimental Subarachnoid Hemorrhage
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Phosphorylation of Akt by SC79 Prevents Iron Accumulation and Ameliorates Early Brain Injury in a Model of Experimental Subarachnoid Hemorrhage

机译:在实验性蛛网膜下腔出血的模型中,SC79磷酸化Akt可以防止铁积累并减轻早期脑损伤。

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Previous studies have demonstrated that activation of Akt may alleviate early brain injury (EBI) following subarachnoid hemorrhage (SAH). This study is undertaken to determine whether iron metabolism is involved in the beneficial effect of Akt activation after SAH. Therefore, we used a novel molecule, SC79, to activate Akt in an experimental Sprague–Dawley rat model of SAH. Rats were randomly divided into four groups as follows: sham, SAH, SAH + vehicle, SAH + SC79. The results confirmed that SC79 effectively enhanced the defense against oxidative stress and alleviated EBI in the temporal lobe after SAH. Interestingly, we found that phosphorylation of Akt by SC79 reduced cell surface transferrin receptor-mediated iron uptake and promoted ferroportin-mediated iron transport after SAH. As a result, SC79 administration diminished the iron content in the brain tissue. Moreover, the impaired Fe-S cluster biogenesis was recovered and loss of the activities of the Fe-S cluster-containing enzymes were regained, indicating that injured mitochondrial functions are restored to healthy levels. These findings suggest that disrupted iron homeostasis could contribute to EBI and Akt activation may regulate iron metabolism to relieve iron toxicity, further protecting neurons from EBI after SAH.
机译:先前的研究表明,激活Akt可以缓解蛛网膜下腔出血(SAH)后的早期脑损伤(EBI)。进行这项研究来确定铁代谢是否参与SAH后Akt激活的有益作用。因此,我们在实验性SAH的Sprague-Dawley大鼠模型中使用了新型分子SC79激活Akt。将大鼠随机分为四组:假手术,SAH,SAH +载体,SAH + SC79。结果证实,SC79有效增强了SAH后颞叶对氧化应激的防御能力,减轻了EBI。有趣的是,我们发现SAH后,SC79对Akt的磷酸化减少了细胞表面转铁蛋白受体介导的铁摄取,并促进了铁转运蛋白介导的铁转运。结果,SC79的施用减少了脑组织中的铁含量。此外,恢复了受损的Fe-S簇生物发生,并恢复了含Fe-S簇的酶的活性丧失,表明受损的线粒体功能已恢复到健康水平。这些发现表明,破坏的铁稳态可能会促进EBI,Akt激活可能调节铁的代谢以减轻铁的毒性,从而进一步保护SAH后神经元免受EBI的侵害。

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