首页> 外文期刊>Free radical research >Mitochondrial oxidative stress index, activity of redox-sensitive aconitase and eff ects of endogenous anti-and pro-oxidants on its activity in control, Alzheimer ' s disease and Swedish Familial Alzheimer ' s disease brain
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Mitochondrial oxidative stress index, activity of redox-sensitive aconitase and eff ects of endogenous anti-and pro-oxidants on its activity in control, Alzheimer ' s disease and Swedish Familial Alzheimer ' s disease brain

机译:线粒体氧化应激指数,氧化还原敏感性乌头酸酶活性以及内源性抗氧化剂和促氧化剂对其控制,阿尔茨海默氏病和瑞典家族性阿尔茨海默氏病脑的活性的影响

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摘要

Effi cient function of the mitochondrial respiratory chain and the citric acid cycle (CAC) enzymes is required for the maintenance of human brain function. A conception of oxidative stress (OxS) was recently advanced as a disruption of redox signalling and control. Mitochondrial OxS (MOxS) is implicated in the development of Alzheimer ' s disease (AD). Thus, both pro-and anti-oxidants of the human body and MOxS target primarily the redox-regulated CAC enzymes, like mitochondrial aconitase (MAc). We investigated the specifi c activity of the MAc and MOxS index (MOSI) in an age-matched control (Co), AD and Swedish Familial AD (SFAD) postmortem autopsies collected from frontal cortex (FC) and occipital primary cortex (OC) regions of the brain. We also examined whether the mitochondrial neuroprotective signalling molecules glutathione, melatonin and 17-β-estradiol (17 β E) and mitochondrially active pro-oxidant neurotoxic amyloid-β peptide can modulate the activity of the MAc isolated from FC and OC regions similarly or diff erently in the case of Co, AD and SFAD. The activity of redox-sensitive MAc may directly depend on the mitochondrial oxidant/antioxidant balance in age-matched Co, AD and SFAD brain regions.
机译:维持人类大脑功能需要线粒体呼吸链和柠檬酸循环(CAC)酶的有效功能。氧化应激(OxS)的概念最近被提出来破坏氧化还原信号和控制。线粒体OxS(MOxS)与阿尔茨海默氏病(AD)的发展有关。因此,人体和MOxS的前氧化剂和抗氧化剂都主要靶向氧化还原调节的CAC酶,例如线粒体乌头酸酶(MAc)。我们调查了年龄匹配的对照(Co),AD和瑞典家族性AD(SFAD)尸体解剖中从额叶皮层(FC)和枕叶初级皮层(OC)区域收集的MAc和MOxS指数(MOSI)的特定活性的大脑。我们还检查了线粒体神经保护信号分子谷胱甘肽,褪黑激素和17-β-雌二醇(17βE)和线粒体活性抗氧化剂神经毒性淀粉样β肽是否可以相似或差异地调节从FC和OC区分离的MAc的活性对于Co,AD和SFAD来说,是非常重要的。氧化还原敏感的MAc的活性可能直接取决于年龄匹配的Co,AD和SFAD脑区域中的线粒体氧化剂/抗氧化剂平衡。

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