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Endocrine Crosstalk Between Skeletal Muscle and the Brain

机译:骨骼肌和大脑之间的内分泌串扰

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摘要

Skeletal muscle is an essential regulator of energy homeostasis and a potent coordinator of exercise-induced adaptations in other organs including the liver, fat or the brain. Skeletal muscle-initiated crosstalk with other tissues is accomplished though the secretion of myokines, protein hormones which can exert autocrine, paracrine and long-distance endocrine effects. In addition, the enhanced release or uptake of metabolites from and into contracting muscle cells, respectively, likewise can act as a powerful mediator of tissue interactions, in particular in regard to the central nervous system. The present review will discuss the current stage of knowledge regarding how exercise and the muscle secretome improve a broad range of brain functions related to vascularization, neuroplasticity, memory, sleep and mood. Even though the molecular and cellular mechanisms underlying the communication between muscle and brain is still poorly understood, physical activity represents one of the most effective strategies to reduce the prevalence and incidence of depression, cognitive, metabolic or degenerative neuronal disorders, and thus warrants further study.
机译:骨骼肌是能量稳态的重要调节器,也是运动引起的其他器官(包括肝脏,脂肪或大脑)适应的有效协调者。骨骼肌引发的与其他组织的串扰是通过分泌能发挥自分泌,旁分泌和远距离内分泌作用的肌动蛋白,蛋白激素而实现的。此外,代谢产物分别从收缩的肌肉细胞中释放或摄取的增加同样可以充当组织相互作用的有力介质,特别是在中枢神经系统方面。本综述将讨论有关运动和肌肉分泌蛋白组如何改善与血管化,神经可塑性,记忆力,睡眠和情绪有关的广泛脑功能的知识的当前阶段。尽管仍很少了解肌肉和大脑之间沟通的分子和细胞机制,但体育锻炼仍是减少抑郁症,认知,代谢或变性神经元疾病的流行和发生率的最有效策略之一,因此值得进一步研究。

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