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Effects of post-training administration of LY341495, as an mGluR2/3 antagonist on spatial memory deficit in rats fed with high-fat diet

机译:Ly341495后训练后施用的影响,作为高脂饮食喂养大鼠空间记忆缺陷的MgluR2 / 3拮抗剂

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High-fat diets (HFDs) adversely influence glutamate metabolism and neurotransmission. The precise role of the group II metabotropic glutamate receptors (mGluR2/3) antagonist on spatial memory deficit following consumption of HFD has not yet been clarified. Therefore, in this study, we examined the effects of post-training administration of mGluR2/3 antagonism; LY341495 on spatial memory in rats fed with HFD (for 10 weeks) by using Morris Water Maze (MWM) task. The training session for testing memory acquisition in MWM consisted of 4 trials per day for 4 consecutive days. Twenty-four hours after the last training session the spatial probe test (retention) was given. Intraperitoneal injection (i.p) injection of LY341495 was done 30min before probe test. Our results showed that 10 weeks consumption of HFD had no significant effect on escape latency and swimming distance in memory acquisition. Our finding showed that consumption of a HFD leads to reference memory impairment in the probe test. HFD animals spent less time in the target zone in compare with control animals. Also, LY341495 improved HFD-induced reference memory (retention) impairment. HFD animals treated with LY341495 spent more time in the target zone in compare with HFD animals. Escape latencies to find the visible platform during visual task were same in all experimental groups, indicating no visual impairment in the animals. We propose that a HFD may act through mGluR2/3 within the brain to reduce synaptic plasticity, which impairs memory retrieval, and post-training administration of LY341495 can reduce HFD-induced reference memory impairment.
机译:高脂肪饮食(HFDS)对谷氨酸代谢和神经递质产生不利影响。尚未阐明II组代谢谷氨酸受体(MGLUR2 / 3)对空间记忆缺陷的拮抗剂的确切作用尚未澄清。因此,在这项研究中,我们研究了培训后培训施用MGLUR2 / 3拮抗作用的影响;使用Morris水迷宫(MWM)任务,用HFD(持续10周)喂养的大鼠空间记忆的LY341495。用于测试MWM中记忆收购的培训课程由连续4天每天进行4项试验。上次训练会议后二十四小时给出了空间探测试验(保留)。在探测试验前30min完成Ly341495的腹膜内注射(I.P)。我们的研究结果表明,10周的HFD消费对内存采集中的逃避延迟和游泳距离没有显着影响。我们的发现表明,HFD的消耗导致探测试验中的参考记忆障碍。 HFD动物在与对照动物的比较方面在目标区域中花费较少的时间。此外,LY341495改善了HFD诱导的参考记忆(保留)损伤。用LY341495治疗的HFD动物在与HFD动物的比较中在目标区域中花费了更多的时间。在视觉任务中找到可见平台的逃避延迟在所有实验组中相同,表明动物中没有视觉损害。我们建议HFD可以通过大脑内的MGLUR2 / 3作用,以减少突触可塑性,损害内存检索,LY341495的训练后给药可以降低HFD诱导的参考记忆障碍。

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