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长期口服抗氧化补充剂可预防大鼠脑线粒体功能的年龄相关性氧化下降。

Age-related oxidative decline of mitochondrial functions in rat brain is prevented by long term oral antioxidant supplementation.

机构信息

Department of Biochemistry, Institute of Postgraduate Medical Education and Research, Kolkata, India.

出版信息

Biogerontology. 2011 Apr;12(2):119-31. doi: 10.1007/s10522-010-9301-8. Epub 2010 Sep 21.

Abstract

A combination of antioxidants (N-acetyl cysteine, α-lipoic acid, and α-tocopherol) was selected for long term oral supplementation study in rats for protective effects on age-related mitochondrial alterations in the brain. Four groups of rats were chosen: young control (6-7 months); aged rats (22-24 months); aged rats (22-24 months) on daily antioxidant supplementation from 18 month onwards and young rats (6-7 months) on daily antioxidant supplementation from 2 month onwards. The brain mitochondrial functional parameters, status of antioxidant enzymes and accumulation of oxidative damage markers were measured in the four groups of rats. A significant decrease in complex IV activity and a loss of transmembrane potential and phosphorylation capacity along with an increased accumulation of oxidative damage markers and compromised antioxidant enzyme status were noticed in aged rat brain mitochondria as compared to that in young controls, but in aged rats supplemented with oral antioxidants the mitochondrial alterations were largely prevented. Antioxidant supplementation in young rats had no effect on mitochondrial parameters investigated in this study. The results have implications in biochemical and functional deficits of brain during aging as well as in neurodegenerative disorders.

摘要

选择抗氧化剂(N-乙酰半胱氨酸、α-硫辛酸和 α-生育酚)的组合进行长期口服补充研究,以观察其对与年龄相关的大脑线粒体改变的保护作用。选择了四组大鼠:年轻对照组(6-7 个月);老年组(22-24 个月);从 18 个月开始,每日给予抗氧化剂补充的老年组;从 2 个月开始,每日给予抗氧化剂补充的年轻组。测量了四组大鼠的大脑线粒体功能参数、抗氧化酶状态和氧化损伤标志物的积累情况。与年轻对照组相比,老年大鼠的脑线粒体中发现复合物 IV 活性显著降低,跨膜电位和磷酸化能力丧失,氧化损伤标志物积累增加,抗氧化酶状态受损,但口服抗氧化剂补充可在很大程度上预防这种改变。年轻大鼠补充抗氧化剂对本研究中研究的线粒体参数没有影响。这些结果对衰老过程中大脑的生化和功能缺陷以及神经退行性疾病具有重要意义。

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