首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Age-Dependent Effect of Every-Other-Day Feeding and Aerobic Exercise in Ubiquinone Levels and Related Antioxidant Activities in Mice Muscle
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Age-Dependent Effect of Every-Other-Day Feeding and Aerobic Exercise in Ubiquinone Levels and Related Antioxidant Activities in Mice Muscle

机译:隔日饲喂和有氧运动对泛醌水平和小鼠肌肉相关抗氧化活性的年龄依赖性

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Aging affects many biochemical, cellular, and physiological processes in the organisms. Accumulation of damage based on oxidized macromolecules is found in many age-associated diseases. Coenzyme Q (Q) is one of the main molecules involved in metabolic and antioxidant activities in cells. Q-dependent antioxidant activities are importantly involved on the protection of cell membranes against oxidation. Many studies indicate that Q decay in most of the organs during aging. In our study, no changes in Q levels were found in old animals in comparison with young animals. On the other hand, the interventions, caloric restriction based on every-other-day feeding procedure, and physical exercise were able to increase Q levels in muscle, but only in old and not in young animals. Probably, this effect prevented the increase in lipid peroxidation found in aged animals and also protein carbonylation. Further, Q-dependent antioxidant activities such as NADH-cytochrome b(5) reductase and NAD(P)H-quinone oxidoreductase 1 are also modulated by both exercise and every other day feeding. Taken together, we demonstrate that exercise and dietary restriction as every-other-day procedure can regulate endogenous synthesized Q levels and Q-dependent antioxidant activities in muscle, preventing oxidative damage in aged muscle.
机译:衰老会影响生物体内的许多生化,细胞和生理过程。在许多与年龄有关的疾病中发现了基于氧化大分子的损害累积。辅酶Q(Q)是参与细胞代谢和抗氧化活性的主要分子之一。 Q依赖的抗氧化剂活性与保护细胞膜免受氧化有关。许多研究表明,衰老过程中大多数器官的Q衰减。在我们的研究中,与年幼动物相比,老年动物的Q水平没有变化。另一方面,干预,基于每隔一天进食程序的热量限制和体育锻炼能够增加肌肉中的Q水平,但仅在年老的动物中会增加。这种作用可能阻止了老年动物体内脂质过氧化作用的增加,也阻止了蛋白质的羰基化。此外,还可以通过运动和隔日喂食来调节Q依赖性抗氧化剂活性,例如NADH-细胞色素b(5)还原酶和NAD(P)H-醌氧化还原酶1。综上所述,我们证明运动和饮食限制作为日常工作可以调节肌肉中内源性合成Q水平和Q依赖的抗氧化活性,从而防止衰老肌肉的氧化损伤。

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