胰岛素样生长因子I循环的内感受性信号传导与运动的神经保护作用。

Q3 Neuroscience
Jonathan Zegarra-Valdivia, Estrella Fernandez de Sevilla, Jaime Pignatelli, Ignacio Torres Aleman
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引用次数: 0

摘要

体育活动已被证明对大脑功能有益。由于对大多数脑部疾病缺乏适当的治疗方法,运动已成为预防甚至治疗这些疾病的一种受欢迎的替代方法。因此,运动的神经保护作用背后的机制正受到密切关注。此外,由于许多患有不同神经系统疾病的患者无法进行运动,因此基于潜在细胞和分子机制的药理模拟物的开发具有治疗意义(Narkar VA, Downes M, Yu RT, Embler E, Wang YX, Banayo E, Cell 134:405- 415,2008)。作为这些机制的一部分,我们将研究胰岛素样生长因子I (IGF-I)的作用,这是一种多效神经保护信号,也是一种已建立的大脑运动有益作用的介质。运动刺激循环中的igf - 1进入大脑,在那里它介导与运动相关的促进神经源性、促进认知和情绪调节作用。通过其有效的细胞保护作用(抗凋亡、抗氧化、抗炎),igf - 1参与与运动相关的修复和体内平衡过程。我们假设循环的igf - 1,肌肉和骨量的调节因子,在体液分支中形成内感受系统的一部分,将肌肉/骨量告知大脑。通过这种方式,igf - 1将内感受性信号传递到参与协调身体活动的大脑区域,以使其适应可用的活力,即肌肉力量。由于运动涉及许多大脑区域的活动,运动引起的循环igf - 1的进入对神经的保护是全脑的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interoceptive Signaling by Circulating Insulin Like Growth Factor I and Neuroprotection by Exercise.

Physical activity has been proven to be beneficial for brain function. Due to a lack of appropriate therapies for the majority of brain diseases, exercise has become a favored alternative to prevent and even treat several of these pathologies. Thus, the mechanisms underlying the neuroprotective actions of exercise are under intense scrutiny. Furthermore, since many patients afflicted with different neurological conditions are not able to perform exercise, development of pharmacological mimics based on knowledge of underlying cellular and molecular mechanisms is of therapeutic interest (Narkar VA, Downes M, Yu RT, Embler E, Wang YX, Banayo E, Cell 134:405-415, 2008). As part of these mechanisms, we will examine the role of insulin-like growth factor I (IGF-I), a pleiotropic neuroprotective signal, and one of the established mediators of the beneficial actions of exercise in the brain. Exercise stimulates the entrance of circulating IGF-I into the brain where it mediates pro-neurogenic, pro-cognitive, and mood modulatory effects known to be associated to exercise. Through its potent cytoprotective actions (anti-apoptotic, anti-oxidant, anti-inflammatory), IGF-I participates in reparative and homeostatic processes associated to exercise. We postulate that circulating IGF-I, a regulator of muscle and bone mass, forms part of an interoceptive system within a humoral branch informing the brain of muscle/bone mass. In this way, IGF-I conveys interoceptive signaling to brain areas involved in orchestrating physical activity to adapt them to available vigor, i.e., muscle strength. Because exercise engages the activity of many brain areas, neuroprotection by exercise-elicited entrance of circulating IGF-I is brain-wide.

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来源期刊
Advances in neurobiology
Advances in neurobiology Neuroscience-Neurology
CiteScore
2.80
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