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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Decreased in vitro mitochondrial function is associated with enhanced brain metabolism, blood flow, and memory in Surf1-deficient mice
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Decreased in vitro mitochondrial function is associated with enhanced brain metabolism, blood flow, and memory in Surf1-deficient mice

机译:Surf1缺陷小鼠体外线粒体功能降低与脑代谢,血流和记忆增强有关

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摘要

Recent studies have challenged the prevailing view that reduced mitochondrial function and increased oxidative stress are correlated with reduced longevity. Mice carrying a homozygous knockout (KO) of the Surf1 gene showed a significant decrease in mitochondrial electron transport chain Complex IV activity, yet displayed increased lifespan and reduced brain damage after excitotoxic insults. In the present study, we examined brain metabolism, brain hemodynamics, and memory of Surf1 KO mice using in vitro measures of mitochondrial function, in vivo neuroimaging, and behavioral testing. We show that decreased respiration and increased generation of hydrogen peroxide in isolated Surf1 KO brain mitochondria are associated with increased brain glucose metabolism, cerebral blood flow, and lactate levels, and with enhanced memory in Surf1 KO mice. These metabolic and functional changes in Surf1 KO brains were accompanied by higher levels of hypoxia-inducible factor 1 alpha, and by increases in the activated form of cyclic AMP response element-binding factor, which is integral to memory formation. These findings suggest that Surf1 deficiency-induced metabolic alterations may have positive effects on brain function. Exploring the relationship between mitochondrial activity, oxidative stress, and brain function will enhance our understanding of cognitive aging and of age-related neurologic disorders.
机译:最近的研究挑战了普遍的观点,即线粒体功能降低和氧化应激增加与寿命降低有关。携带Surf1基因纯合敲除(KO)的小鼠线粒体电子转运链复合物IV活性显着降低,但在兴奋性中毒后表现出更长的寿命和减少的脑损伤。在本研究中,我们使用线粒体功能的体外测量,体内神经成像和行为测试,检查了Surf1 KO小鼠的脑代谢,脑血流动力学和记忆力。我们显示减少的呼吸和孤立的Surf1 KO脑线粒体中过氧化氢的生成增加与增加的脑葡萄糖代谢,脑血流量和乳酸水平,并增强Surf1 KO小鼠的记忆。 Surf1 KO脑中的这些代谢和功能变化伴随着较高水平的缺氧诱导因子1α的出现,并伴随着环状AMP反应元件结合因子活化形式的增加,而后者是记忆形成必不可少的。这些发现表明,Surf1缺乏症引起的代谢改变可能对脑功能产生积极影响。探索线粒体活动,氧化应激和脑功能之间的关系将增进我们对认知衰老和与年龄有关的神经系统疾病的理解。

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