首页> 外文期刊>Frontiers in Behavioral Neuroscience >Dietary Polyphenol Supplementation Prevents Alterations of Spatial Navigation in Middle-Aged Mice
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Dietary Polyphenol Supplementation Prevents Alterations of Spatial Navigation in Middle-Aged Mice

机译:膳食多酚补充剂可防止中年小鼠空间导航的改变

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Spatial learning and memory deficits associated with hippocampal synaptic plasticity impairments are commonly observed during aging. Besides, the beneficial role of dietary polyphenols has been suggested as potential functional food candidates to prevent this memory decline. Indeed, polyphenols could potentiate the signaling pathways of synaptic plasticity underlying learning and memory. In this study, spatial learning deficits of middle-aged mice were first highlighted and characterized according to their navigation patterns in the Morris water maze task. An eight-week polyphenol-enriched diet, containing a polyphenol-rich extract from grape and blueberry (PEGB; from the Neurophenols Consortium) with high contents of flavonoids, stilbenes and phenolic acids, was then successful in reversing these age-induced effects. The use of spatial strategies was indeed delayed with aging whereas a polyphenol supplementation could promote the occurrence of spatial strategies. These behavioral results were associated with neurobiological changes: while the expression of hippocampal calmodulin kinase II (CaMKII) mRNA levels was reduced in middle-aged animals, the polyphenol-enriched diet could rescue them. Besides, an increased expression of nerve growth neurotrophic factor (NGF) mRNA levels was also observed in supplemented adult and middle-aged mice. Thus these data suggest that supplementation with polyphenols could be an efficient nutritional way to prevent age-induced cognitive decline.
机译:通常在衰老期间观察到与海马突触可塑性损伤相关的空间学习和记忆缺陷。此外,膳食多酚的有益作用已被建议作为潜在的功能性食物候选物,以防止这种记忆力下降。确实,多酚可以增强学习和记忆背后的突触可塑性的信号传导途径。在这项研究中,首先强调了中年小鼠的空间学习缺陷,并根据其在莫里斯水迷宫任务中的导航模式进行了表征。八周的富含多酚的饮食,成功地逆转了这些年龄引起的影响,其中富含葡萄和蓝莓的多酚提取物(PEGB;来自神经酚协会),其中黄酮类化合物,芪类和酚酸的含量很高。随着年龄的增长,空间策略的使用确实延迟了,而多酚的补充可以促进空间策略的发生。这些行为结果与神经生物学变化有关:虽然中年动物海马钙调蛋白激酶II(CaMKII)mRNA的表达水平降低,但富含多酚的饮食可以挽救它们。此外,在成年和中年小鼠中也观察到神经生长神经营养因子(NGF)mRNA表达的增加。因此,这些数据表明补充多酚可能是预防年龄引起的认知下降的有效营养方法。

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