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The complex role of physical exercise and reactive oxygen species on brain

机译:体育锻炼和活性氧对大脑的复杂作用

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Reactive oxygen species (ROS) are continuously generated during aerobic metabolism and at moderate level. They play a role in redox signaling, but in significant concentration they cause oxidative damage and neurodegeneration. Because of the enhanced sensitivity of brain to ROS, it is especially important to maintain the normal redox state in different types of neuron cells. In last decade it became clear that regular exercise beneficially affects brain function, and can play an important preventive and therapeutic role in stroke, Alzheimer, and Parkinson diseases. The effects of exercise appear to be very complex and could include neurogenesis via neurotrophic factors, increased capillariszation, decreased oxidative damage, and increased proteolytic degradation by proteasome and neprilysin. Data from our and other laboratories indicate that exercise-induced modulation of ROS levels plays a role in the protein content and expression of brain-derived neurotrophic factor, tyrosine-related kinase B (TrkB), and cAMP response element binding protein, resulting in better function and increased neurogenesis. Therefore, it appears that exercise-induced modulation of the redox state is an important means, by which exercise benefits brain function, increases the resistance against oxidative stress, facilitates recovery from oxidative stress, and attenuates age-associated decline in cognition.
机译:有氧代谢过程中会持续产生适度的活性氧(ROS)。它们在氧化还原信号传导中发挥作用,但浓度很高时会引起氧化损伤和神经变性。由于大脑对ROS的敏感性增强,因此在不同类型的神经元细胞中维持正常的氧化还原状态尤为重要。在过去的十年中,很明显,经常运动有益于脑功能,并且可以在中风,阿尔茨海默氏病和帕金森氏病中发挥重要的预防和治疗作用。运动的影响似乎非常复杂,可能包括通过神经营养因子引起的神经发生,毛细血管化程度增加,氧化损伤减少以及蛋白酶体和中性溶酶的蛋白水解降解增加。来自我们和其他实验室的数据表明,运动引起的ROS水平调节在脑源性神经营养因子,酪氨酸相关激酶B(TrkB)和cAMP反应元件结合蛋白的蛋白质含量和表达中起作用,从而产生更好的功能和神经发生增加。因此,看来运动引起的氧化还原状态调节是一种重要手段,通过该运动,大脑功能得到改善,增加了对氧化应激的抵抗力,促进了氧化应激的恢复,并减轻了与年龄有关的认知能力下降。

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