首页> 外文期刊>Behavioural Brain Research: An International Journal >NNZ-2591, a novel diketopiperazine, prevented scopolamine-induced acute memory impairment in the adult rat.
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NNZ-2591, a novel diketopiperazine, prevented scopolamine-induced acute memory impairment in the adult rat.

机译:NNZ-2591是一种新型的二酮哌嗪,可预防东pol碱诱导的成年大鼠急性记忆障碍。

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In rats, cyclo-L-glycyl-L-2-allylproline (NNZ-2591), a diketopiperazine, is neuroprotective after ischemic brain injury and also improves motor function in a rat model of Parkinson's disease. Given nootropic actions of diketopiperazines, we investigated the effects of and potential role for acetylcholine neurotransmission in NNZ-2591 on spatial memory after scopolamine-induced amnesia in rats. Adult male Wistar rats were assigned to four groups: saline/water; saline/NNZ-2591; scopolamine/water and scopolamine/NNZ-2591. Morris Water Maze (MWM) tasks were used to determine spatial learning and memory. Thirty minutes prior to each of four daily acquisition trials, rats were intraperitoneally injected with either scopolamine (0.5 mg/kg) or saline. Either NNZ-2591 (30 mg/kg) or water was administered orally (gavages) 10 min after the injection. Immediately after completion of the day 4 acquisition trial a spatial probe trial was performed. The brains were then collected for immunohistochemical analysis. Scopolamine impaired spatial learning and memory compared to saline treated group, particularly in the day 1 acquisition trial. NNZ-2591 did not reverse this deficit, however it significantly improved memory retention by showing more time spent in the correct quadrant. NNZ-2591 also counteracted the scopolamine-induced up-regulation of choline-acetyltransferase positive neurons in the striatum and similarly counteracted the increased synaptophysin density in the hippocampus. Furthermore, a scopolamine-independent antagonistic effect on muscarinic M2 acetylcholine receptors was found after NNZ-2591 treatment, supporting its modulation of acetylcholine neurotransmission. The data suggest that NNZ-2591 prevents scopolamine-induced acute impairment in memory and modulation of acetylcholine neurotransmission may be the mode of action underlying the memory improvement.
机译:在大鼠中,环-L-糖基-L-2-烯丙基脯氨酸(NNZ-2591)(一种二酮哌嗪)在缺血性脑损伤后具有神经保护作用,并且在帕金森氏病大鼠模型中也改善了运动功能。给定二酮哌嗪的促智作用,我们研究了东pol碱诱导的失忆后NNZ-2591中乙酰胆碱神经传递对空间记忆的影响及其潜在作用。将成年雄性Wistar大鼠分为四组:盐水/水;生理盐水。盐水/ NNZ-2591;东pol碱/水和东pol碱/ NNZ-2591。莫里斯水迷宫(MWM)任务用于确定空间学习和记忆。在四次每日采集试验中的每一个试验前三十分钟,给大鼠腹膜内注射东pol碱(0.5 mg / kg)或生理盐水。注射后10分钟,口服(管饲)NNZ-2591(30 mg / kg)或水。在第4天的获取试验完成后,立即进行了空间探测试验。然后收集大脑进行免疫组织化学分析。与盐水治疗组相比,东碱损害了空间学习和记忆,特别是在第1天的采集试验中。 NNZ-2591并未逆转这种缺陷,但是它通过显示在正确象限上花费更多的时间来显着改善了内存保留。 NNZ-2591还抵消了东pol碱诱导的纹状体中胆碱-乙酰转移酶阳性神经元的上调,并同样抵消了海马突触素密度的增加。此外,在NNZ-2591处理后,发现对毒蕈碱M2乙酰胆碱受体具有东碱依赖性的拮抗作用,支持其对乙酰胆碱神经传递的调节。数据表明,NNZ-2591可以预防东pol碱引起的急性记忆障碍,而乙酰胆碱神经传递的调节可能是记忆改善的潜在作用方式。

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