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运动对海马体功能的影响:食欲素-A可能的参与作用。

Exercise Influence on Hippocampal Function: Possible Involvement of Orexin-A.

作者信息

Chieffi Sergio, Messina Giovanni, Villano Ines, Messina Antonietta, Esposito Maria, Monda Vincenzo, Valenzano Anna, Moscatelli Fiorenzo, Esposito Teresa, Carotenuto Marco, Viggiano Andrea, Cibelli Giuseppe, Monda Marcellino

机构信息

Section of Human Physiology and Unit of Dietetic and Sport Medicine, Department of Experimental Medicine, Second University of Naples Naples, Italy.

Section of Human Physiology and Unit of Dietetic and Sport Medicine, Department of Experimental Medicine, Second University of NaplesNaples, Italy; Department of Clinical and Experimental Medicine, University of FoggiaFoggia, Italy.

出版信息

Front Physiol. 2017 Feb 14;8:85. doi: 10.3389/fphys.2017.00085. eCollection 2017.

Abstract

In the present article, we provide a brief review of current knowledge regarding the effects induced by physical exercise on hippocampus. Research involving animals and humans supports the view that physical exercise, enhancing hippocampal neurogenesis and function, improves cognition, and regulates mood. These beneficial effects depend on the contribute of more factors including the enhancement of vascularization and upregulation of growth factors. Among these, the BDNF seems to play a significant role. Another putative factor that might contribute to beneficial effects of exercise is the orexin-A. In support of this hypothesis there are the following observations: (1) orexin-A enhances hippocampal neurogenesis and function and (2) the levels of orexin-A increase with physical exercise. The beneficial effects of exercise may represent an important resource to hinder the cognitive decline associated with the aging-related hippocampal deterioration and ameliorate depressive symptoms.

摘要

在本文中,我们简要回顾了有关体育锻炼对海马体影响的当前知识。涉及动物和人类的研究支持这样一种观点,即体育锻炼通过增强海马体神经发生和功能来改善认知并调节情绪。这些有益效果取决于包括血管生成增强和生长因子上调在内的多种因素。其中,脑源性神经营养因子(BDNF)似乎发挥着重要作用。另一个可能促成运动有益效果的假定因素是食欲素A。支持这一假设的观察结果如下:(1)食欲素A增强海马体神经发生和功能;(2)食欲素A的水平随着体育锻炼而增加。运动的有益效果可能是一种重要资源,有助于阻碍与衰老相关的海马体退化所导致的认知衰退,并改善抑郁症状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c395/5306252/e24142a39a3e/fphys-08-00085-g0001.jpg

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