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首页> 外文期刊>Amino acids >Up-regulation of HIF-1α is associated with neuroprotective effects of agmatine against rotenone-induced toxicity in differentiated SH-SY5Y cells
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Up-regulation of HIF-1α is associated with neuroprotective effects of agmatine against rotenone-induced toxicity in differentiated SH-SY5Y cells

机译:HIF-1α的上调与龟氨酸对旋转酮诱导的毒性毒性的神经保护作用有关,分化的SH-SY5Y细胞

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Agmatine, a metabolite generated by arginine decarboxylation, has been reported as neuromodulator and neuroactive substance. Several findings suggest that agmatine displays neuroprotective effects in several models of neurodegenerative disorders, such as Parkinson’s disease (PD). It has been hypothesized that biogenic amines may be involved in neuroprotection by scavenging oxygen radicals, thus preventing the generation of oxidative stress. Mitochondrial dysfunction, that leads to a reduction of oxygen consumption, followed by activation of prolyl hydroxylase and decrease of hypoxia-inducible factor 1 alpha (HIF-1α) levels, has been demonstrated to play a role in PD pathogenesis. Using rotenone-treated differentiated SH-SY5Y cells as the in vitro PD model, we here investigated the molecular mechanisms underlying agmatine neuroprotective effects. Our results showed that the preliminary addition of agmatine induces HIF-1α activation, and prevents the rotenone-induced production of free radical species, and the activation of apoptotic pathways by inhibiting mitochondrial membrane potential decrease and caspase 3 as well as cytochrome c increase. Notably, these effects are mediated by HIF-1α, as indicated by experiments using a HIF-1α inhibitor. The present findings suggest that the treatment with agmatine is able to counteract the neuronal cell injury evoked by mitochondrial toxins.
机译:Agmatine是精氨酸脱羧产生的代谢物,已被报告为神经调节剂和神经活性物质。有几个研究结果表明,梨甘汀在几种模型的神经变性障碍模型中显示神经保护作用,例如帕金森病(PD)。已经假设,生物胺可以通过清除氧自由基来参与神经保护作用,从而防止产生氧化应激。线粒体功能障碍,导致氧气消耗的减少,然后通过激活羟基羟化酶和缺氧诱导因子1α(HIF-1α)水平的降低,在Pd发病机制中发挥作用。使用旋转源处理的分化的SH-SY5Y细胞作为体外PD模型,我们在此研究了杏仁神经保护作用的潜在分子机制。我们的研究结果表明,Agmatine的初步添加诱导HIF-1α激活,并防止转胸酮诱导的自由基物质的产生,并通过抑制线粒体膜电位减少和半胱天冬酶3以及细胞色素C增加凋亡途径的激活。值得注意的是,这些效果由HIF-1α介导,如使用HIF-1α抑制剂的实验所示。本研究结果表明,用毒素的治疗能够抵消由线粒体毒素引起的神经元细胞损伤。

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