Institute of Clinical Pharmacy & Pharmacology, Second Xiangya Hospital, Central South University, Changsha 410011, China.
Evid Based Complement Alternat Med. 2014;2014:729827. doi: 10.1155/2014/729827. Epub 2014 Nov 11.
Depression is associated with stress-induced neural atrophy in limbic brain regions, whereas exercise has antidepressant effects as well as increasing hippocampal synaptic plasticity by strengthening neurogenesis, metabolism, and vascular function. A key mechanism mediating these broad benefits of exercise on the brain is induction of neurotrophic factors, which instruct downstream structural and functional changes. To systematically evaluate the potential neurotrophic factors that were involved in the antidepressive effects of exercise, in this study, we assessed the effects of swimming exercise on hippocampal mRNA expression of several classes of the growth factors (BDNF, GDNF, NGF, NT-3, FGF2, VEGF, and IGF-1) and peptides (VGF and NPY) in rats exposed to chronic unpredictable mild stress (CUMS). Our study demonstrated that the swimming training paradigm significantly induced the expression of BDNF and BDNF-regulated peptides (VGF and NPY) and restored their stress-induced downregulation. Additionally, the exercise protocol also increased the antiapoptotic Bcl-xl expression and normalized the CUMS mediated induction of proapoptotic Bax mRNA level. Overall, our data suggest that swimming exercise has antidepressant effects, increasing the resistance to the neural damage caused by CUMS, and both BDNF and its downstream neurotrophic peptides may exert a major function in the exercise related adaptive processes to CUMS.
抑郁症与应激诱导的边缘脑区神经萎缩有关,而运动具有抗抑郁作用,通过增强神经发生、代谢和血管功能增加海马突触可塑性。介导运动对大脑这些广泛益处的关键机制是诱导神经营养因子,它指导下游的结构和功能变化。为了系统地评估运动对大脑的抗抑郁作用所涉及的潜在神经营养因子,在这项研究中,我们评估了游泳运动对慢性不可预测轻度应激(CUMS)暴露大鼠海马中几类生长因子(BDNF、GDNF、NGF、NT-3、FGF2、VEGF 和 IGF-1)和肽(VGF 和 NPY)mRNA 表达的影响。我们的研究表明,游泳训练方案显著诱导了 BDNF 和 BDNF 调节肽(VGF 和 NPY)的表达,并恢复了它们因应激而下调的表达。此外,该运动方案还增加了抗凋亡 Bcl-xl 的表达,并使 CUMS 介导的促凋亡 Bax mRNA 水平的诱导正常化。总的来说,我们的数据表明,游泳运动具有抗抑郁作用,增加了对 CUMS 引起的神经损伤的抵抗力,BDNF 及其下游神经营养肽可能在与 CUMS 相关的运动适应性过程中发挥主要作用。