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自由基与大脑衰老

Free radicals and brain aging.

作者信息

Poon H Fai, Calabrese Vittorio, Scapagnini Giovanni, Butterfield D Allan

机构信息

Department of Chemistry, Center of Membrane Sciences, University of Kentucky, Lexington 40506, USA.

出版信息

Clin Geriatr Med. 2004 May;20(2):329-59. doi: 10.1016/j.cger.2004.02.005.

Abstract

We reviewed here the formation of free radicals and its effect physiologically. Studies mentioned above have indicated that free radical/ROS/RNS involvement in brain aging is direct as well as correlative. Increasing evidence demonstrates that accumulation of oxidation of DNA, proteins, and lipids by free radicals are responsible for the functional decline in aged brains. Also, lipid peroxidation products, such as MDA, HNE, and acrolein, were reported to react with DNA and proteins to produce further damage in aged brains. Therefore, the impact of free radicals on brain aging is pronounced. It has been estimated that 10,000 oxidative interactions occur between DNA and endogenously generated free radicals per human cell per day, and at least one of every three proteins in the cell of older animals is dysfunctional as an enzyme or structural protein, due to oxidative modification. Although these estimated numbers reveal that free radical-mediated protein and DNA modification play significant roles in the deterioration of aging brain, they do not imply that free radical damages are the only cause of functional decline in aged brain. Nevertheless,although other factors may be involved in the cascade of damaging effects in the brain, the key role of free radicals in this process cannot be underestimated. This article has examined the role and formation of free radicals in brain aging. We propose that free radicals are critical to cell damage in aged brain and endogenous, and that exogenous antioxidants, therefore, may play effective roles in therapeutic strategies for age-related neurodegenerative disorders.

摘要

我们在此回顾了自由基的形成及其生理效应。上述研究表明,自由基/活性氧/活性氮在脑衰老过程中的参与既是直接的,也是相关的。越来越多的证据表明,自由基对DNA、蛋白质和脂质的氧化积累是导致老年大脑功能衰退的原因。此外,据报道,脂质过氧化产物,如丙二醛、羟壬烯醛和丙烯醛,会与DNA和蛋白质发生反应,在老年大脑中造成进一步损伤。因此,自由基对脑衰老的影响是显著的。据估计,人类每个细胞每天DNA与内源性产生的自由基之间会发生10000次氧化相互作用,并且由于氧化修饰,老年动物细胞中每三种蛋白质中至少有一种作为酶或结构蛋白功能失调。尽管这些估计数字表明自由基介导的蛋白质和DNA修饰在衰老大脑的退化过程中起重要作用,但它们并不意味着自由基损伤是老年大脑功能衰退的唯一原因。然而,尽管其他因素可能参与了大脑损伤效应的级联反应,但自由基在这一过程中的关键作用不可低估。本文探讨了自由基在脑衰老中的作用和形成。我们认为,自由基对老年大脑中的细胞损伤至关重要且是内源性的,因此,外源性抗氧化剂可能在与年龄相关的神经退行性疾病的治疗策略中发挥有效作用。

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