Fabel Klaus, Fabel Konstanze, Tam Betty, Kaufer Daniela, Baiker Armin, Simmons Natalie, Kuo Calvin J, Palmer Theo D
Department of Neurosurgery, Mail Code 5487, MSLS P309, 1201 Welch Rd, Stanford University, Stanford, CA 94305-5487, USA.
Eur J Neurosci. 2003 Nov;18(10):2803-12. doi: 10.1111/j.1460-9568.2003.03041.x.
Declining learning and memory function is associated with the attenuation of adult hippocampal neurogenesis. As in humans, chronic stress or depression in animals is accompanied by hippocampal dysfunction, and neurogenesis is correspondingly down regulated, in part, by the activity of the hypothalamic-pituitary-adrenal axis as well as glutamatergic and serotonergic networks. Antidepressants can reverse this effect over time but one of the most clinically effective moderators of stress or depression and robust stimulators of neurogenesis is simple voluntary physical exercise such as running. Curiously, running also elevates circulating stress hormone levels yet neurogenesis is doubled in running animals. In evaluating the signalling that running provides to the central nervous system in mice, we have found that peripheral vascular endothelial growth factor (VEGF) is necessary for the effects of running on adult hippocampal neurogenesis. Peripheral blockade of VEGF abolished running-induced neurogenesis but had no detectable effect on baseline neurogenesis in non-running animals. These data suggest that VEGF is an important element of a 'somatic regulator' of adult neurogenesis and that these somatic signalling networks can function independently of the central regulatory networks that are typically considered in the context of hippocampal neurogenesis.
学习和记忆功能的衰退与成年海马体神经发生的减弱有关。与人类一样,动物的慢性应激或抑郁伴随着海马体功能障碍,神经发生相应下调,部分原因是下丘脑 - 垂体 - 肾上腺轴以及谷氨酸能和血清素能网络的活动。随着时间的推移,抗抑郁药可以逆转这种效应,但压力或抑郁最有效的临床调节因子之一以及神经发生的强大刺激因素是简单的自愿体育锻炼,如跑步。奇怪的是,跑步也会提高循环应激激素水平,但在跑步的动物中神经发生却增加了一倍。在评估跑步向小鼠中枢神经系统提供的信号时,我们发现外周血管内皮生长因子(VEGF)对于跑步对成年海马体神经发生的影响是必需的。VEGF的外周阻断消除了跑步诱导的神经发生,但对不跑步动物的基线神经发生没有可检测到的影响。这些数据表明,VEGF是成年神经发生“体细胞调节器”的重要组成部分,并且这些体细胞信号网络可以独立于通常在海马体神经发生背景下考虑的中枢调节网络发挥作用。