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Mitochondrial respiratory chain dysfunction in ageing; influence of vitamin E deficiency.

机译:衰老的线粒体呼吸链功能障碍;维生素E缺乏症的影响。

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The causes and consequences of ageing are likely to be complex and involve the interaction of many processes. It has been proposed that the decline in mitochondrial function caused by the accumulation of oxidatively damaged molecules plays a significant role in the ageing process. In agreement with previous reports we have shown that the activities of NADH CoQ1 reductase and cytochrome oxidase declined with increasing age in both rat liver and gastrocnemius muscle mitochondria. However, only in the liver were the changes in lipid peroxidation and membrane fluidity suggestive of an age-related increase in oxidative stress. After 12 weeks on a vitamin E deficient diet, vitamin E levels were undetectable in both gastrocnemius muscle and liver. In skeletal muscle, this was associated with a statistically significant increase in lipid peroxidation, a decrease in cytochrome oxidase activity after 48 weeks, and an exacerbation in the age-related rate of decline of NADH CoQ1 reductase activity. This was consistent with the suggestion that an imbalance between free radical generation and antioxidant defence may contribute to the mitochondrial dysfunction with age. In contrast to this, vitamin E deficiency in the liver caused a significant increase in mitochondrial respiratory chain activities with increasing age despite evidence of increased lipid peroxidation. Comparison of other features in these samples suggested vitamin E deficiency; did not have a significant impact upon mtDNA translation; induced a compensatory increase in glutathione levels in muscle, which was less marked in the liver, but probably most interestingly caused a significant decrease in the mitochondrial membrane fluidity in muscle but not in liver mitochondria. These data suggest that while increased lipid peroxidation exacerbated the age-related decline in muscle respiratory chain function this relationship was not observed in liver. Consequently other factors are likely to be contributing to the age-related decline in mitochondrial function and specific stimuli may influence or even reverse these age-related effects as observed with vitamin E deficiency in the liver.
机译:衰老的原因和后果可能很复杂,并且涉及许多过程的相互作用。已经提出,由氧化损伤分子的积累引起的线粒体功能的下降在衰老过程中起重要作用。与以前的报道一致,我们已经表明,在大鼠肝脏和腓肠肌线粒体中,NADH CoQ1还原酶和细胞色素氧化酶的活性随着年龄的增长而下降。然而,仅在肝脏中脂质过氧化和膜流动性的变化暗示了与年龄有关的氧化应激增加。在缺乏维生素E的饮食上12周后,腓肠肌和肝脏均未检测到维生素E水平。在骨骼肌中,这与脂质过氧化物的统计学显着增加,48周后细胞色素氧化酶活性的下降以及与年龄相关的NADH CoQ1还原酶活性下降速率的加剧有统计学意义。这与以下观点一致:自由基生成和抗氧化剂防御之间的不平衡可能会随着年龄的增长而导致线粒体功能障碍。与此相反,尽管有证据表明脂质过氧化增加,但肝脏中维生素E缺乏会导致线粒体呼吸链活性随年龄的增长而显着增加。这些样品中其他特征的比较表明维生素E缺乏;对mtDNA翻译没有重大影响;引起肌肉中谷胱甘肽水平的代偿性增加,肝脏中的这种变化不明显,但最有趣的是可能导致肌肉中线粒体膜流动性的显着下降,但肝线粒体中却没有。这些数据表明,虽然脂质过氧化作用的加剧加剧了与年龄相关的肌肉呼吸链功能下降,但在肝脏中未观察到这种关系。因此,如肝中维生素E缺乏症所观察到的那样,其他因素也可能导致与年龄相关的线粒体功能下降,并且特定刺激可能会影响甚至逆转这些与年龄相关的影响。

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