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首页> 外文期刊>American Journal of Physiology >Hippocampal mitochondrial dysfunction in rat aging.
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Hippocampal mitochondrial dysfunction in rat aging.

机译:大鼠衰老时海马线粒体功能障碍。

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Hippocampus mitochondrial dysfunction with impaired electron transfer and increased oxidative damage was observed upon rat aging. Hippocampal mitochondria of aged (12 mo) and senescent (20 mo) rats showed, compared with young (4 mo) rats, marked decreases in the rate of state 3 respiration with NAD-dependent substrates (32-51%) and in the activities of mitochondrial complexes I (57-73%) and IV (33-54%). The activity of mitochondrial nitric oxide synthase was also decreased, 53-66%, with age. These losses in enzymatic activity were more marked in the hippocampus than in brain cortex or in whole brain. The histochemical assay of mitochondrial complex IV in the hippocampus showed decreased staining upon aging. Oxidative damage, determined as the mitochondrial content of thiobarbituric-acid reactive substances (TBARS) and protein carbonyls, increased in aged and senescent hippocampus (66-74% in TBARS and 48-96% in carbonyls). A significant statistical correlation was observed between mitochondrial oxidative damage and enzymatic activity. Mitochondrial dysfunction with shortage of energy supply is considered a likely cause of dysfunction in aged hippocampus.
机译:在大鼠衰老时,观察到海马线粒体功能障碍,电子传递受损,氧化损伤增加。与年轻(4 mo)大鼠相比,老年(12 mo)和衰老(20 mo)大鼠海马线粒体的3态呼吸速率和NAD依赖性底物(32-51%)和活动明显降低线粒体复合物I(57-73%)和IV(33-54%)。随着年龄的增长,线粒体一氧化氮合酶的活性也降低了53-66%。这些酶活性的降低在海马中比在大脑皮层或整个大脑中更为明显。海马线粒体复合物IV的组织化学分析显示,衰老后染色减少。氧化损伤由硫代巴比妥酸反应性物质(TBARS)和蛋白质羰基的线粒体含量决定,在衰老和衰老的海马体中增加(TBARS中66-74%,羰基中48-6%)。线粒体的氧化损伤和酶活性之间观察到显着的统计相关性。能量供应不足的线粒体功能障碍被认为是老年海马体功能障碍的可能原因。

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