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缺氧预处理可逆转谷胱甘肽过氧化物酶转基因小鼠脑内新生儿缺氧缺血后的保护作用。

Hypoxic preconditioning reverses protection after neonatal hypoxia-ischemia in glutathione peroxidase transgenic murine brain.

作者信息

Sheldon R Ann, Aminoff Alexandra, Lee Christina L, Christen Stephan, Ferriero Donna M

机构信息

Department of Neurology, University of California San Francisco, San Francisco, California 94143, USA.

出版信息

Pediatr Res. 2007 Jun;61(6):666-70. doi: 10.1203/pdr.0b013e318053664c.

Abstract

The effect of hypoxic preconditioning (PC) on hypoxic-ischemic (HI) injury was explored in glutathione peroxidase (GPx)-overexpressing mice (human GPx-transgenic [hGPx-tg]) mice. Six-day-old hGPx-tg mice and wild-type (Wt) littermates were pre-conditioned with hypoxia for 30 min and subjected to the Vannucci procedure of HI 24 h after the PC stimulus. Histopathological injury was determined 5 d later (P12). Additional animals were killed 2 h or 24 h after HI and ipsilateral cerebral cortices assayed for GPx activity, glutathione (GSH), and hydrogen peroxide (H2O2). In line with previous studies, hypoxic PC reduced injury in the Wt brain. Preconditioned Wt brain had increased GPx activity, but reduced GSH, relative to naive 24 h after HI. Hypoxic PC did not reduce injury to hGPx-tg brain and even reversed the protection previously reported in the hGPx-tg. GPx activity and GSH in hGPx-tg cortices did not change. Without PC, hGPx-tg cortex had less H2O2 accumulation than Wt at both 2 h and 24 h. With PC, H2O2 remained low in hGPx-tg compared with Wt at 2 h, but at 24 h, there was no longer a difference between hGPx-tg and Wt cortices. Accumulation of H2O2 may be a mediator of injury, but may also induce protective mechanisms.

摘要

在过表达谷胱甘肽过氧化物酶(GPx)的小鼠(人GPx转基因[hGPx - tg]小鼠)中探究了缺氧预处理(PC)对缺氧缺血(HI)损伤的影响。6日龄的hGPx - tg小鼠和野生型(Wt)同窝小鼠经缺氧预处理30分钟,并在PC刺激后24小时接受HI的Vannucci操作。5天后(P12)确定组织病理学损伤。另外的动物在HI后2小时或24小时处死,对同侧大脑皮质检测GPx活性、谷胱甘肽(GSH)和过氧化氢(H2O2)。与先前的研究一致,缺氧PC减少了Wt脑内的损伤。相对于HI后24小时未处理的Wt脑,预处理的Wt脑GPx活性增加,但GSH减少。缺氧PC并未减轻hGPx - tg脑的损伤,甚至逆转了先前在hGPx - tg中报道的保护作用。hGPx - tg皮质中的GPx活性和GSH没有变化。在未进行PC处理时,hGPx - tg皮质在2小时和24小时时的H2O2积累均少于Wt。在进行PC处理时,hGPx - tg在2小时时与Wt相比H2O2仍保持低水平,但在24小时时,hGPx - tg和Wt皮质之间不再有差异。H2O2的积累可能是损伤的介质,但也可能诱导保护机制。

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