首页> 外文期刊>International journal of molecular medicine >HIF?1α attenuates neuronal apoptosis by upregulating EPO expression following cerebral ischemia?reperfusion injury in a rat MCAO model
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HIF?1α attenuates neuronal apoptosis by upregulating EPO expression following cerebral ischemia?reperfusion injury in a rat MCAO model

机译:HIF?1α通过上调脑缺血后脑缺血后的EPO表达衰减神经元细胞凋亡?在大鼠MCAO模型中再灌注损伤

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Hypoxia?inducible factor?1α (HIF?1α) is a key transcriptional factor in response to hypoxia and is involved in ischemic stroke. In the present study, the potential for HIF?1α to inhibit neuronal apoptosis through upregulating erythropoietin (EPO) was investigated in a transient middle cerebral artery occlusion (tMCAO) rat stroke model. For this purpose, a recombinant adenovirus expressing HIF?1α was engineered (Ad?HIF?1α). Control adenovirus (Ad group), Ad?HIF?1α (Ad?HIF?1α group) or Ad?HIF?1α in addition to erythropoietin mimetic peptide?9 (EMP9), an EPO?receptor (?R) antagonist (Ad?HIF?1α+EMP9 group), were used for an intracranial injection into rat ischemic penumbra 1?h following MCAO. All rats demonstrated functional improvement following tMCAO, while the improvement rate was faster in rats treated by Ad?HIF?1α compared with all other groups. The EPO?R inhibitor partially reversed the benefits of Ad?HIF?1α. Apoptosis induced by tMCAO was significantly inhibited by Ad?HIF?1α (P<0.05). The expression of HIF?1α, evaluated by immunohistochemistry either in neurons or astrocytes, was upregulated by Ad?HIF?1α. Both EPO mRNA and protein expression were increased by Ad?HIF?1α, however, there was no significant change of EPO?R either on an mRNA level or protein level. Furthermore, EMP9 did not change the EPO expression which was upregulated by Ad?HIF?1α. Activated caspase 3 in neurons was suppressed by Ad?HIF?1α. Activated caspase 3 downregulated by HIF?1α was partially blocked by EMP9. Altogether, the present data demonstrated that HIF?1α attenuates neuronal apoptosis partially through upregulating EPO following cerebral ischemia in rat. Thus, upregulating HIF?1α subsequent to a stroke may be a potential treatment for ischemic stroke.
机译:缺氧?诱导因子?1α(HIF?1α)是响应缺氧并且参与缺血性卒中的关键转录因子。在本研究中,在瞬时中脑动脉闭塞(TMCAO)大鼠卒中模型中研究了HIFα1α通过上调促红细胞生成素(EPO)来抑制神经元凋亡的可能性。为此目的,设计了一种重组腺病毒的HIFβ1α(Ad?HIF?1α)。控制腺病毒(广告组),广告?HIF?1α(AD?HIF?1α组)或AD?HIF?1α除了促红细胞生成素模拟肽吗?9(EMP9),一种EPO?受体(?R)拮抗剂(广告? HIF?1α+ EMP9组)用于颅内注射到大鼠缺血半影之后MCAO后。所有大鼠在TMCAO后都表现出功能性改善,而ADα1α处理的大鼠的提高率更快。与所有其他组相比。 EPO?R抑制剂部分扭转了广告的益处?HIF?1α。 TMCAO诱导的细胞凋亡被ADα1α显着抑制(P <0.05)。通过免疫组织化学在神经元或星形胶质细胞中评估的HIFα1α的表达是通过ADα1α上调的。然而,通过ADα1α增加了EPO mRNA和蛋白质表达。然而,在mRNA水平或蛋白质水平上没有显着变化。此外,EMP9没有改变通过广告ΔHIF?1α上调的EPO表达。通过AD抑制神经元中的活性半胱天冬酶3?HIF?1α。通过HIFα1α下调的活性的半胱天冬酶3被EMP9部分阻断。完全,本数据证明了HIFα1α通过在大鼠中脑缺血之后的上调ePO来衰减神经元细胞凋亡。因此,在中风后的上调HIF?1α可以是缺血性卒中的潜在治疗方法。

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