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Phosphodiesterase type 5 inhibition improves early memory consolidation of object information.

机译:5型磷酸二酯酶抑制作用可改善对象信息的早期记忆整合。

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摘要

The nitric oxide (NO)-cyclic GMP (cGMP) signaling pathway is assumed to play an important role in processes underlying learning and memory. We used phosphodiesterase type 5 (PDE5) inhibitors to study the role of cGMP in object- and spatial memory. Our results and those reported in other studies indicate that elevated hippocampal cGMP levels are required to improve the memory performance of rodents in object recognition and passive avoidance learning, but not in spatial learning. The timing of treatment modulates the effects on memory and strongly supports a role for cGMP in early stages of memory formation. Alternative explanations for the improved memory performance of PDE5 inhibitors are also discussed. Immunocytochemical studies showed that in vitro slice incubations with PDE5 inhibitors increase NO-stimulated cGMP levels mainly in hippocampal varicose fibers. Reviewing the available data on the localization of the different components of the NO-cGMP signaling pathway, indicates a complex interaction between NO and cGMP, which may be independent of each other. It is discussed that further studies are needed, immunocytochemical and behavioral, to better understand the cGMP-mediated molecular mechanisms underlying memory formation.
机译:假定一氧化氮(NO)环GMP(cGMP)信号通路在学习和记忆的基础过程中起重要作用。我们使用磷酸二酯酶5型(PDE5)抑制剂来研究cGMP在对象和空间记忆中的作用。我们的结果和其他研究报告的结果表明,提高海马cGMP水平需要提高啮齿类动物在对象识别和被动回避学习中的记忆性能,但在空间学习中则不需要。治疗的时机调节对记忆的影响,并强烈支持cGMP在记忆形成的早期阶段的作用。还讨论了PDE5抑制剂改善记忆性能的其他解释。免疫细胞化学研究表明,与PDE5抑制剂一起进行的体外切片孵育主要在海马静脉曲张纤维中增加了NO刺激的cGMP水平。回顾关于NO-cGMP信号传导途径不同组成部分定位的可用数据,表明NO和cGMP之间可能存在相互独立的复杂相互作用。讨论需要进一步研究,免疫细胞化学和行为,以更好地了解cGMP介导的内存形成基础的分子机制。

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