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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Absence of glutathione peroxidase-1 exacerbates cerebral ischemia-reperfusion injury by reducing post-ischemic microvascular perfusion.
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Absence of glutathione peroxidase-1 exacerbates cerebral ischemia-reperfusion injury by reducing post-ischemic microvascular perfusion.

机译:谷胱甘肽过氧化物酶-1的缺乏通过减少缺血后的微血管灌注来加重脑缺血-再灌注损伤。

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Mice deficient in the anti-oxidant enzyme glutathione peroxidase-1 (Gpx1) have a greater susceptibility to cerebral injury following a localized ischemic event. Much of the response to ischemia-reperfusion is caused by aberrant responses within the microvasculature, including inflammation, diminished endothelial barrier function (increased vascular permeability), endothelial activation, and reduced microvascular perfusion. However, the role of Gpx1 in regulating these responses has not been investigated. Wild-type and Gpx1-/- mice underwent focal cerebral ischemia via mid-cerebral artery occlusion followed by measurement of cerebral perfusion via laser Doppler and intravital microscopy. Post-ischemic brains in wild-type mice displayed significant deficit in microvascular perfusion. However, in Gpx1-/- mice, the deficit in cerebral blood flow was significantly greater than that in wild-type mice, and this was associated with significant increase in infarct size and increased vascular permeability. Ischemia-reperfusion also resulted in expression of matrix metalloproteinase-9 (MMP-9) in endothelial cells. The absence of Gpx1 was associated with marked increase in pro-MMP-9 expression as well as potentiated MMP-9 activity. Pre-treatment of Gpx1-/- mice with the anti-oxidant ebselen restored microvascular perfusion, limited the induction and activation of MMP-9, and attenuated the increases in infarct size and vascular permeability. These findings demonstrate that the anti-oxidant function of Gpx1 plays a critical role in protecting the cerebral microvasculature against ischemia-reperfusion injury by preserving microvascular perfusion and inhibiting MMP-9 expression.
机译:局部缺血事件后,抗氧化酶谷胱甘肽过氧化物酶-1(Gpx1)不足的小鼠对脑损伤的敏感性更高。对缺血-再灌注的大部分反应是由微脉管系统内的异常反应引起的,包括炎症,内皮屏障功能减弱(血管通透性增加),内皮激活和微血管灌注减少。但是,尚未研究Gpx1在调节这些响应中的作用。野生型和Gpx1-/-小鼠通过大脑中动脉闭塞进行局灶性脑缺血,然后通过激光多普勒和活体显微镜检查测量脑灌注。野生型小鼠的缺血后大脑在微血管灌注中显示出明显的缺陷。但是,在Gpx1-/-小鼠中,脑血流不足明显大于野生型小鼠,这与梗死面积的显着增加和血管通透性增加有关。缺血再灌注还导致内皮细胞中基质金属蛋白酶9(MMP-9)的表达。 Gpx1的缺失与pro-MMP-9表达的明显增加以及增强的MMP-9活性有关。用抗氧化剂依布硒仑对Gpx1-/-小鼠进行预处理可恢复微血管灌注,限制MMP-9的诱导和激活,并减轻梗死面积和血管通透性的增加。这些发现表明,Gpx1的抗氧化功能通过保留微血管灌注和抑制MMP-9表达,在保护脑微血管免受缺血再灌注损伤中起关键作用。

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