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首页> 外文期刊>Pediatric Research >Impact of Room Air Resuscitation on Early Growth Response Gene-1 in a Neonatal Piglet Model of Cerebral Hypoxic Ischemia
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Impact of Room Air Resuscitation on Early Growth Response Gene-1 in a Neonatal Piglet Model of Cerebral Hypoxic Ischemia

机译:室内空气复苏对脑缺氧缺血新生仔猪早期生长反应基因-1的影响。

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Early growth response gene-1 (Egr-1) is up-regulated by hypoxia-ischemia (HI) and reactive oxygen species (ROS) in adult animals, functioning as a master switch in inflammation and thrombogenesis. We hypothesized that resuscitation from HI with 100% O2 would result in greater Egr-1 expression, ROS, and cell death (CD) in the brains of newborn piglets than 21% O2. Two control groups breathed 21% O2 for 1 h followed by 21% or 100% O2 for 1 h. Two HI groups underwent carotid artery occlusion and breathed 8–12% O2 for 1 h followed by occlusion release and 21% or 100% O2 for 1 h. Brain Egr-1 mRNA and protein were analyzed via quantitative PCR and Western blot. CD and ROS were measured by fluorescence microscopy. Egr-1 mRNA expression increased throughout the brain in response to HI with regional heterogeneity, but protein levels did not. Resuscitation with 100% oxygen did not cause any additional Egr-1 mRNA, Egr-1 protein, CD, or ROS production as compared with 21% oxygen. There was no difference in physiologic recovery after HI with room air compared with 100% O2 resuscitation. However, 100% O2 administration was associated with increased CD in the brainstem independent of HI. Therefore, 100% O2 may have been toxic to some brainstem cells and potentially have significance in long-term neurologic sequelae seen after neonatal HI/resuscitation. Egr-1 protein levels may be tightly regulated in an attempt to diminish neurotoxicity or to enhance plasticity at this stage of development.Abbreviations: aCSF, artificial cerebrospinal fluid; CD, cell death; DCFA, 5-chloromethyl-2,7-dichlorodihydrofluorescein diacetate; Egr-1, early growth response gene-1; HI, hypoxia-ischemia; HI/R, hypoxia-ischemia and resuscitation; MAP, mean arterial blood pressure; PI, propidium iodide; ROS, reactive oxygen species
机译:成年动物的缺氧缺血(HI)和活性氧(ROS)上调了早期生长反应基因1(Egr-1),在炎症和血栓形成中起着主要的开关作用。我们假设用100%O2的HI进行复苏可以使新生仔猪的大脑中的Egr-1表达,ROS和细胞死亡(CD)高于21%O2。两个对照组呼吸21%的O2持续1小时,然后呼吸21%或100%的O2持续1 h。两个HI组进行了颈动脉闭塞,并呼吸8–12%的O2 1小时,然后释放闭塞和21%或100%的O2 1 h。脑Egr-1 mRNA和蛋白质通过定量PCR和Western印迹进行分析。 CD和ROS通过荧光显微镜测量。 Egr-1 mRNA表达随区域异质性对HI的响应在整个大脑中增加,但蛋白水平并未升高。与21%的氧气相比,用100%的氧气进行复苏不会引起任何额外的Egr-1 mRNA,Egr-1蛋白,CD或ROS产生。与100%的O2复苏相比,室内空气进行HI后的生理恢复没有差异。但是,100%O2的给药与脑干CD的增加有关,而与HI无关。因此,100%的O2可能对某些脑干细胞有毒性,并且可能对新生儿HI /复苏后出现的长期神经系统后遗症具有重要意义。 Egr-1蛋白的水平可能受到严格调节,以试图在此发育阶段降低神经毒性或增强可塑性。aCSF,人工脑脊液; CD,细胞死亡; DCFA,5-氯甲基-2,7-二氯二氢荧光素二乙酸酯; Egr-1,早期生长反应基因-1; HI,缺氧缺血; HI / R,缺氧缺血和复苏; MAP,平均动脉血压; PI,碘化丙啶; ROS,活性氧

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