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首页> 外文期刊>Physiology & behavior >Ghrelin induced memory facilitation implicates nitric oxide synthase activation and decrease in the threshold to promote LTP in hippocampal dentate gyrus.
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Ghrelin induced memory facilitation implicates nitric oxide synthase activation and decrease in the threshold to promote LTP in hippocampal dentate gyrus.

机译:Ghrelin诱导的记忆促进涉及一氧化氮合酶的激活和阈值的降低,以促进海马齿状回LTP。

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摘要

Although the hypothalamus has been long considered the main ghrelin (Ghr) target organ mediating orexigenic effects, recently it has been shown that in-vivo Ghr hippocampus administration improves learning and memory in the inhibitory avoidance paradigm. However, the possible mechanisms underlying this memory facilitation effect have not been clarified. Given that the biochemical memory cascade into the hippocampus involves nitric oxide (NO) synthesis via NO synthase (NOS) activation, we investigated 1) if Ghr administration modulated NOS activity in the hippocampus; and 2) if hippocampal NOS inhibition influenced Ghr-induced memory facilitation, using a behavioral paradigm, biochemical determinations and an electrophysiological model. Our results showed that intra-hippocampal Ghr administration increased the NOS activity in a dose dependent manner, and reduced the threshold for LTP generation in dentate gyrus of rat hippocampus. Moreover, pre-administration of NG-nitro-l-arginine (l-NOArg) in the hippocampus partially prevented the Ghr-induced memory improvement, abolished the increase in NOS activity, and prevented the decreased threshold to generate LTP induced by Ghr. These findings suggest that activation of the NOS/NO pathway in hippocampus participates in the effects of Ghr on memory consolidation and is related with plastic properties of the hippocampal three-synaptic loop.
机译:尽管下丘脑长期以来一直被认为是主要的促生长素释放肽(Ghr)靶器官,其介导致癌作用,但近来已表明,体内Ghr海马给药可在抑制回避范式中改善学习和记忆。但是,这种记忆促进作用的潜在机制尚未阐明。鉴于进入海马的生化记忆级联涉及通过NO合酶(NOS)激活产生的一氧化氮(NO)合成,我们研究了1)Ghr给药是否调节了海马的NOS活性; 2)海马NOS抑制是否使用行为范式,生化测定和电生理模型影响了Ghr诱导的记忆促进。我们的结果表明,海马内给予Ghr以剂量依赖性方式增加了NOS活性,并降低了大鼠海马齿状回中LTP产生的阈值。而且,在海马中预先施用NG-硝基-1-精氨酸(1-NOArg)部分地阻止了Ghr诱导的记忆改善,消除了NOS活性的增加,并防止了由Ghr诱导的产生LTP的阈值降低。这些发现表明,海马中NOS / NO途径的激活参与了Ghr对记忆巩固的影响,并与海马三突触环的可塑性有关。

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