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首页> 外文期刊>Nutritional neuroscience >Dietary omega-3 deficiency reduces BDNF content and activation NMDA receptor and Fyn in dorsal hippocampus: Implications on persistence of long-term memory in rats
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Dietary omega-3 deficiency reduces BDNF content and activation NMDA receptor and Fyn in dorsal hippocampus: Implications on persistence of long-term memory in rats

机译:饮食中omega-3缺乏症会降低背海马区的BDNF含量并激活NMDA受体和Fyn:对大鼠长期记忆的持久性的影响

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Omega-3 (n-3) fatty acids are important for adequate brain function and cognition. The aim of the present study was to evaluate how n-3 fatty acids influence the persistence of long-term memory (LTM) in an aversive memory task and to explore the putative mechanism involved. Female rats received isocaloric diets that included n-3 (n-3 group) or not (D group). The adult litters were subjected to an inhibitory avoidance task (0.7 mA, 1.0 seconds foot shock) to elicit persistent LTM. Twelve hours after the training session, the fatty acid profile and the brain derived neurotrophic factor (BDNF) content of the dorsal hippocampus were assessed. In addition, we measured the activation of the NR2B subunit of the N-methyl-D-aspartate (NMDA) receptor and the SRC family protein Fyn. Despite pronounced learning in both groups, the persistence of LTM was abolished in the D group 7 days after the training session. We also observed that the D group presented reductions in hippocampal DHA (22: 6 n-3) and BDNF content. Twelve hours after the training session, the D group showed decreased NR2B and Fyn phosphorylation in the dorsal hippocampus, with no change in the total content of these proteins. Further, there was a decrease in the interaction of Fyn with NR2B in the D group, as observed by co-immunoprecipitation. Taken together, these data suggest that n-3 fatty acids influence the persistence of LTM by maintaining adequate levels of DHA and BDNF as well as by influencing the activation of NR2B and Fyn during the period of memory formation.
机译:Omega-3(n-3)脂肪酸对于适当的大脑功能和认知非常重要。本研究的目的是评估厌恶性记忆任务中n-3脂肪酸如何影响长期记忆(LTM)的持久性,并探讨所涉及的推定机制。雌性大鼠接受等热量饮食,其中包括n-3(n-3组)或不包括n-3(D组)。对成年幼仔进行抑制回避任务(0.7 mA,1.0秒足部电击)以引起持久性LTM。训练后十二小时,评估背海马的脂肪酸谱和脑源性神经营养因子(BDNF)含量。此外,我们测量了N-甲基-D-天冬氨酸(NMDA)受体和SRC家族蛋白Fyn的NR2B亚基的激活。尽管两组都有明显的学习经验,但在训练后7天D组中LTM的持久性消失了。我们还观察到,D组的海马DHA(22:6 n-3)和BDNF含量降低。训练后十二小时,D组显示背海马区的NR2B和Fyn磷酸化降低,而这些蛋白质的总含量没有变化。另外,通过共免疫沉淀观察到,D组中Fyn与NR2B的相互作用降低。综上所述,这些数据表明,n-3脂肪酸通过维持足够水平的DHA和BDNF以及在记忆形成期间影响NR2B和Fyn的活化,从而影响LTM的持久性。

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