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Mitochondrial dysfunction in brain aging: role of oxidative stress and cardiolipin.

机译:脑衰老中的线粒体功能障碍:氧化应激和心磷脂的作用。

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摘要

Aging is a biological process characterized by impairment of cellular bioenergetic function, increased oxidative stress, attenuated ability to respond to stresses, increased risk of contracting age-associated disorders that affects many tissues, with a more marked effect on brain and heart function. Oxidative stress is widely thought to underpin many aging processes. The mitochondrion is considered the most important cellular organelle to contribute to the aging process, mainly through respiratory chain dysfunction and formation of reactive oxygen species, leading to damage to mitochondrial proteins, lipids and mitochondrial DNA. Furthermore, exposure to oxidants, especially in the presence of Ca(2+), can induce the mitochondrial permeability transition with deleterious effects on mitochondrial function. Cardiolipin plays a central role in several mitochondrial bioenergetic processes as well as in mitochondrial-dependent steps in apoptosis and mitochondrial membrane stability and dynamics. Alterations to cardiolipin structure, content and acyl chain profile have been associated with mitochondrial dysfunction in multiple tissues in several physiopathological conditions and aging. In this review, we focus on the role played by oxidative stress and cardiolipin in mitochondrial bioenergetic alterations associated with brain aging.
机译:衰老是一种生物学过程,其特征是细胞生物能功能受损,氧化应激增加,对应激的反应能力减弱,与年龄相关的疾病的患病风险增加,这些疾病影响许多组织,对脑和心脏功能的影响更为明显。人们普遍认为氧化应激是许多老化过程的基础。线粒体被认为是促成衰老过程的最重要的细胞器,主要是通过呼吸链功能障碍和活性氧的形成,从而导致线粒体蛋白质,脂质和线粒体DNA受损。此外,暴露于氧化剂,尤其是在存在Ca(2+)的情况下,可以诱导线粒体通透性转变,并对线粒体功能产生有害影响。心磷脂在细胞凋亡,线粒体膜稳定性和动力学中的几个线粒体生物能过程以及线粒体依赖性步骤中起着核心作用。心磷脂结构,含量和酰基链分布的改变已与多种生理病理条件和衰老下的多个组织中的线粒体功能障碍有关。在这篇综述中,我们重点研究氧化应激和心磷脂在与脑衰老相关的线粒体生物能变化中的作用。

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