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Voluntary exercise regionally augments rates of cerebral protein synthesis

机译:区域性自愿运动可提高脑蛋白合成率

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Exercise is a natural form of neurophysiologic stimulation that has known benefits for mental health, maintenance of cerebral function, and stress reduction. Exercise is known to induce an upregulation of brain-derived neurotrophic factor and this is thought to be involved in associated increases in neural plasticity. Protein synthesis is also an essential component of adaptive plasticity. We hypothesized that exercise may stimulate changes in brain protein synthesis as part of its effects on plasticity. Here, we applied the quantitative autoradiographic L-[1-14C]leucine method to the in vivo determination of regional rates of cerebral protein synthesis (rCPS) in adult rats following a seven day period of voluntary wheel-running and their sedentary counterparts. In four of 21 brain regions examined, the mean values of rCPS in the exercised rats were statistically significantly higher than in sedentary controls; regions affected were paraventricular hypothalamic nucleus, ventral hippocampus as a whole, CA1 pyramidal cell layer in ventral hippocampus, and frontal cortex. Increases in rCPS approached statistical significance in dentate gyrus of the ventral hippocampus. Our results affirm the value of exercise in encouraging hippocampal and possibly cortical neuroplasticity, and also suggest that exercise may modulate stimulation of stress-response pathways. Ultimately, our study indicates that measurement of rCPS with PET might be used as a marker of brain response to exercise in human subjects.
机译:运动是神经生理刺激的一种自然形式,对精神健康,维持脑功能和减轻压力具有已知的好处。众所周知,运动会诱发脑源性神经营养因子的上调,而这被认为与神经可塑性的增加有关。蛋白质合成也是适应性可塑性的重要组成部分。我们假设运动可能刺激大脑蛋白质合成的变化,这是其对可塑性的影响的一部分。在这里,我们应用了定量放射自显影L- [1-14C]亮氨酸方法,在体内进行了7天自愿轮转运动和久坐的同伴运动后成年大鼠体内脑蛋白合成(rCPS)区域速率的确定。在被检查的21个大脑区域中的四个中,运动大鼠的rCPS平均值在统计学上显着高于久坐对照组。受影响的区域是脑室下丘脑旁核,整个腹侧海马,腹侧海马中的CA1锥体细胞层和额叶皮层。 rCPS的增加在腹侧海马齿状回中具有统计学意义。我们的研究结果肯定了锻炼在鼓励海马和可能的皮质神经可塑性中的价值,并且还表明锻炼可以调节应激反应途径的刺激。最终,我们的研究表明,用PET测量rCPS可能被用作人类受试者对运动的大脑反应的标志。

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