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首页> 外文期刊>Physiology & behavior >Fish oil supplementation reverses behavioral and neurochemical alterations induced by swimming exercise in rats
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Fish oil supplementation reverses behavioral and neurochemical alterations induced by swimming exercise in rats

机译:鱼油补充逆转在大鼠中游泳运动引起的行为和神经化学改变

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摘要

Diet and exercise are known to affect learning and memory. However, the effects of these interventions in the brain under development remains to be better investigated as the effects of high-intensity exercise. Moreover, it is still unclear how long the influence of diet and exercise lasts after the interventions are ceased. To investigate this, juvenile Wistar rats (30 days old) were supplemented with fish oil rich in polyunsaturated fatty acids (PUFAs) and performed swimming training for 50 days, 45 min per day, 5 times/week. The animals were assessed for locomotor activity with the open field test and for spatial memory with the object location task. To investigate neurochemical parameters such as fatty acids incorporation within the plasma membrane and brain derived neurotrophic factor (BDNF) levels, the animals were euthanized, and the hippocampus dissected. These investigations were made at the end of the supplementation and exercise protocols and 21 days after the protocol has ended. Results indicate that high-intensity exercise impaired the spatial memory and decreased the levels of BDNF. Although supplementation led to PUFAs incorporation in plasma membrane, it did not prevent the harmful effect of exercise on memory. After 21 days of interruption, we observed that the supplementation reversed not only the deleterious effect of exercise on memory but also increased the BDNF levels. These results point to a complex influence of diet and exercise on spatial memory of juvenile rats, persisting after 21 days of interruption.
机译:已知饮食和运动会影响学习和记忆。然而,这些干预措施在开发的大脑中的效果仍然被调查为高强度运动的影响。此外,尚不清楚在停止干预后持续饮食和运动的影响多长时间。为了调查这一点,少年Wistar大鼠(30天)补充了富含多不饱和脂肪酸(PUFA)的鱼油,每天45分钟进行50天进行游泳训练,5次。通过开放场测试评估动物的运动活性,并具有对象位置任务的空间存储器。为了研究神经化学参数,例如脂肪酸在血浆膜和脑衍生的神经营养因子(BDNF)水平中,使动物进行了安乐死,并且对海马进行了解剖。这些调查在补充和行使议定书结束时进行,议定书结束后21天。结果表明,高强度运动损害了空间记忆并降低了BDNF的水平。虽然补充导致Pufas掺入血浆膜,但它并没有阻止运动对记忆的有害影响。 21天中断后,我们观察到补充不仅逆转了运动对记忆的有害影响,而且增加了BDNF水平。这些结果指出了饮食的复杂影响和锻炼在少年大鼠的空间记忆中,在21天中断后持续存在。

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