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首页> 外文期刊>Journal of Molecular Neuroscience: MN >Nrf2 expression by neurons, astroglia, and microglia in the cerebral cortical penumbra of ischemic rats
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Nrf2 expression by neurons, astroglia, and microglia in the cerebral cortical penumbra of ischemic rats

机译:神经元,星形胶质细胞和小胶质细胞在缺血大鼠大脑皮层半影中的Nrf2表达

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摘要

Experimental animal studies have demonstrated that oxidative stress plays an essential role during ischemic stroke. In addition to oxidizing macromolecules leading to cell injury, oxidants are also involved in cell death/survival signal pathways and cause mitochondrial dysfunction. Nuclear factor erythroid 2-related factor 2 (Nrf2) represents one of the major regulators implicated in the endogenous defense system against oxidative stress. We have studied the expression and activation status of Nrf2 under stroke-like conditions using the temporary middle cerebral artery occlusion rat model. Inactive Nrf2 is proteasomal degraded within minutes but stabilized during activation. We analyzed Nrf2 activation and the resulting accumulation in postischemic rat brain cells using double immunofluorescence staining with antibodies directed against Nrf2 and cell type-specific markers. The core infarct region showed no obvious positive staining signal for Nrf2 24 h after the initiation of artery occlusion. However, Nrf2 immunoreactivity was detectable in the ipsilateral penumbra where microglia, astrocytes, and neurons contained Nrf2. Interestingly, Nrf2 was also significantly upregulated in neurons but not in other cell types of the unaffected contralateral site. These results provide strong evidence that Nrf2 is involved in acute stroke-dependent neurodegeneration in the penumbra but not core region and indicate the presence of a systemic Nrf2 activator independent from oxidative stress.
机译:动物实验研究表明,氧化应激在缺血性中风中起着至关重要的作用。除氧化大分子导致细胞损伤外,氧化剂还参与细胞死亡/生存信号通路并引起线粒体功能障碍。核因子类胡萝卜素2相关因子2(Nrf2)代表涉及抗氧化应激的内源防御系统的主要调节剂之一。我们已经使用临时的大脑中动脉阻塞大鼠模型研究了中风样条件下Nrf2的表达和激活状态。惰性Nrf2在几分钟内被蛋白酶体降解,但在激活过程中稳定。我们使用针对Nrf2的抗体和细胞类型特异性标记物进行的双重免疫荧光染色分析了Nrf2的活化及其在缺血后大鼠脑细胞中的积累。梗塞开始后24 h,Nrf2的核心梗塞区域未显示明显的阳性染色信号。但是,在小胶质细胞,星形胶质细胞和神经元含有Nrf2的同侧半影中可检测到Nrf2免疫反应性。有趣的是,Nrf2在神经元中也显着上调,但在未受影响对侧部位的其他细胞类型中则没有。这些结果提供了有力的证据,表明Nrf2参与了半影中的急性中风依赖性神经退行性病变,但不参与核心区域,并表明存在独立于氧化应激的全身性Nrf2激活剂。

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