Laboratory of Molecular Iron Metabolism, College of Life Science, Hebei Normal University, Shijiazhuang, Hebei Province 050024, China.
Laboratory of Exercise Biochemistry in Health, Graduate Program in Health Sciences, School of Medicine, Pontifícia Universidade Católica do Paraná, Curitiba, Paraná, Brazil.
Life Sci. 2020 Jul 1;252:117630. doi: 10.1016/j.lfs.2020.117630. Epub 2020 Apr 12.
Oxidative stress is the core of most pathological situations, and its attribution toward disease conversion is not yet well established. The adaptive capacity of a cell can overcome ROS-induced pathology. However, when a cell fails to extend its maximum adaptive capacity against oxidative stress, it could lead a cell to misbehave or defunct from its normal functions. Any type of physical activity can increase the cells' maximum adaptive capacity, but aging can limit this. However, whether aging is the initiating point of reducing cells' adaptive capacity against oxidative stress or oxidative stress can induce the aging process is a mystery, and it could be the key to solving several uncured diseases. Paradoxically, minimum ROS is needed for cellular homeostasis. Nevertheless, finding factors that can limit or nullify the production of ROS for cellular homeostasis is a million-dollar question. Regular physical exercise is considered to be one of the factors that can limit the production of ROS and increase the ROS-induced benefits in the cells through inducing minimum oxidative stress and increasing maximum adapting capacity against oxidative stress-induced damages. The type and intensity of exercise that can produce such positive effects in the cells remain unclear. Therefore, this review discusses how physical exercise can help to produce minimal positive oxidative stress in preventing skeletal muscle aging.
氧化应激是大多数病理情况的核心,其与疾病转化的关系尚不清楚。细胞的适应能力可以克服 ROS 诱导的病理学。然而,当细胞无法扩展其对氧化应激的最大适应能力时,它可能导致细胞行为异常或失去正常功能。任何类型的体育活动都可以增加细胞的最大适应能力,但衰老会限制这种能力。然而,衰老是否是降低细胞对氧化应激适应能力的起始点,或者氧化应激是否会诱导衰老过程是一个谜,这可能是解决几种未治愈疾病的关键。矛盾的是,细胞内稳态需要最小的 ROS。然而,寻找可以限制或消除 ROS 产生以维持细胞内稳态的因素是一个价值百万美元的问题。有规律的体育锻炼被认为是可以限制 ROS 产生并通过诱导最小的氧化应激和增加对氧化应激诱导损伤的最大适应能力来增加细胞中 ROS 诱导益处的因素之一。能够在细胞中产生这种积极效果的运动类型和强度尚不清楚。因此,本综述讨论了体育锻炼如何有助于产生最小的积极氧化应激,以预防骨骼肌衰老。