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H3 受体拮抗作用增强了 NCAM PSA 介导的可塑性,并改善了在气味辨别和延迟匹配位置范式中的记忆巩固。

H3 receptor antagonism enhances NCAM PSA-mediated plasticity and improves memory consolidation in odor discrimination and delayed match-to-position paradigms.

机构信息

Berand Neuropharmacology, NovaUCD, Belfield Innovation Park, University College Dublin, Dublin, Ireland.

出版信息

Neuropsychopharmacology. 2009 Nov;34(12):2585-600. doi: 10.1038/npp.2009.89. Epub 2009 Aug 5.

Abstract

To further understand the procognitive actions of GSK189254, a histamine H(3) receptor antagonist, we determined its influence on the modulation of hippocampal neural cell adhesion molecule (NCAM) polysialylation (PSA) state, a necessary neuroplastic mechanism for learning and memory consolidation. A 4-day treatment with GSK189254 significantly increased basal expression of dentate polysialylated cells in rats with the maximal effect being observed at 0.03-0.3 mg/kg. At the optimal dose (0.3 mg/kg), GSK189254 enhanced water maze learning and the associated transient increase in NCAM-polysialylated cells. The increase in dentate polysialylated cell frequency induced by GSK189254 was not attributable to enhanced neurogenesis, although it did induce a small, but significant, increase in the survival of these newborn cells. GSK189254 (0.3 mg/kg) was without effect on polysialylated cell frequency in the entorhinal and perirhinal cortex, but significantly increased the diffuse PSA staining observed in the anterior, ventromedial, and dorsomedial aspects of the hypothalamus. Consistent with its ability to enhance the learning-associated, post-training increases in NCAM PSA state, GSK189254 (0.3 mg/kg) reversed the amnesia induced by scopolamine given in the 6-h post-training period after training in an odor discrimination paradigm. Moreover, GSK189254 significantly improved the performance accuracy of a delayed match-to-position paradigm, a task dependent on the prefrontal cortex and degree of cortical arousal, the latter may be related to enhanced NCAM PSA-associated plasticity in the hypothalamus. The procognitive actions of H3 antagonism combined with increased NCAM PSA expression may exert a disease-modifying action in conditions harboring fundamental deficits in NCAM-mediated neuroplasticity, such as schizophrenia and Alzheimer's disease.

摘要

为了进一步了解 GSK189254(一种组胺 H3 受体拮抗剂)的促认知作用,我们确定了其对海马神经细胞黏附分子(NCAM)多聚唾液酸化(PSA)状态调节的影响,这是学习和记忆巩固的必要神经可塑性机制。在大鼠中,GSK189254 治疗 4 天可显著增加齿状回多聚唾液酸化细胞的基础表达,最大效应出现在 0.03-0.3mg/kg 时。在最佳剂量(0.3mg/kg)时,GSK189254 增强了水迷宫学习以及与之相关的 NCAM-多聚唾液酸化细胞的短暂增加。GSK189254 诱导的齿状回多聚唾液酸化细胞频率增加不是由于增强了神经发生,尽管它确实诱导了这些新生细胞的小但显著的存活增加。GSK189254(0.3mg/kg)对杏仁核和旁海马皮质的多聚唾液酸化细胞频率没有影响,但显著增加了下丘脑前、腹内侧和背内侧区观察到的弥散 PSA 染色。与它增强与学习相关的、训练后 NCAM PSA 状态增加的能力一致,GSK189254(0.3mg/kg)逆转了在嗅觉辨别范式训练后 6 小时的训练后给予东莨菪碱引起的健忘症。此外,GSK189254 显著提高了延迟匹配位置范式的表现准确性,这一任务依赖于前额叶皮层和皮层兴奋程度,后者可能与下丘脑 NCAM PSA 相关可塑性增强有关。H3 拮抗作用的促认知作用与增加的 NCAM PSA 表达相结合,可能在存在 NCAM 介导的神经可塑性基本缺陷的情况下发挥疾病修饰作用,例如精神分裂症和阿尔茨海默病。

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