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首页> 外文期刊>Neurochemical journal >Alpha-tocopherol prevents long-term activation of ERK1/2 in neurons of the brain cortex under conditions of oxidative stress
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Alpha-tocopherol prevents long-term activation of ERK1/2 in neurons of the brain cortex under conditions of oxidative stress

机译:α-生育酚可防止氧化应激条件下大脑皮层神经元中ERK1 / 2的长期活化

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摘要

We found that long-term (18 h) preincubation with alpha-tocopherol at microand nanomolar concentrations significantly increases the viability of H2O2-treated immature cultured neurons that were isolated from the cortex of the rat brain. We showed that H2O2 activates extracellular signal regulated protein kinase (ERK1/2) in neurons of the rat brain cortex. The maximum activity of the enzyme in cells was achieved in 5 min from the moment of application of the prooxidant. High activity of ERK1/2 was maintained at the same high level for 24 h after application of H2O2. Preincubation of immature cortical neurons for 18 h with 100 nM or 100 A mu M alpha-tocopherol did not prevent ERK1/2 activation (or enhanced it) at the early stage of H2O2 action. However, alpha-tocopherol significantly decreased (to values close to the control) ERK1/2 activity 5, 12, and 24 h after the onset of H2O2 treatment. According to the literature data, oxidative stress in the brain, which is caused by ischemia or other unfavorable treatments, results in persistent activation of ERK1/2 and administration of its inhibitors strongly prevents the death of brain neurons. These data suggest that the protective effect of alpha-T on the brain neurons in vivo is largely determined by alpha-Tinduced prevention of persistent ERK1/2 activation during oxidative stress.
机译:我们发现,以微摩尔和纳摩尔浓度的α-生育酚进行长期(18 h)预孵育会显着增加从大鼠大脑皮层分离的H2O2处理的未成熟培养神经元的活力。我们表明,H2O2激活大鼠大脑皮层神经元中的细胞外信号调节蛋白激酶(ERK1 / 2)。从施用前氧化剂起的5分钟内,细胞中酶的最大活性就达到了。施用H2O2后24小时内,ERK1 / 2的高活性维持在相同的高水平。未成熟的皮质神经元与100 nM或100 AμMα-生育酚预孵育18小时不能阻止H2O2作用早期的ERK1 / 2激活(或增强)。但是,H2O2处理开始后5、12和24小时,α-生育酚的ERK1 / 2活性显着降低(至接近对照值)。根据文献数据,由局部缺血或其他不利治疗引起的脑部氧化应激可导致ERK1 / 2持续活化,其抑制剂的给药可有效防止脑神经元死亡。这些数据表明,α-T对体内脑神经元的保护作用在很大程度上取决于α-T诱导的氧化应激期间持久性ERK1 / 2激活的预防。

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