首页> 外文OA文献 >The absence of 5-HT4 receptors modulates depression- and anxiety-like responses and influences the response of fluoxetine in olfactory bulbectomised mice: Adaptive changes in hippocampal neuroplasticity markers and 5-HT1A autoreceptor
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The absence of 5-HT4 receptors modulates depression- and anxiety-like responses and influences the response of fluoxetine in olfactory bulbectomised mice: Adaptive changes in hippocampal neuroplasticity markers and 5-HT1A autoreceptor

机译:5-HT4受体的缺乏调节嗅觉和电击的小鼠的抑郁和焦虑样反应,并影响氟西汀的反应:海马神经可塑性标记物和5-HT1A自身受体的适应性变化

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摘要

reclinical studies support a critical role of 5-HT4 receptors (5-HT4Rs) in depression and anxiety, but their influence in depression- and anxiety-like behaviours and the effects of antidepressants remain partly unknown. We evaluated 5-HT4R knockout (KO) mice in different anxiety and depression paradigms and mRNA expression of some neuroplasticity markers (BDNF, trkB and Arc) and the functionality of 5-HT1AR. Moreover, the implication of 5-HT4Rs in the behavioural and molecular effects of chronically administered fluoxetine was assessed in naïve and olfactory bulbectomized mice (OBX) of both genotypes. 5-HT4R KO mice displayed few specific behavioural impairments including reduced central activity in the open-field (anxiety), and decreased sucrose consumption and nesting behaviour (anhedonia). In these mice, we measured increased levels of BDNF and Arc mRNA and reduced levels of trkB mRNA in the hippocampus, and a desensitization of 5-HT1A autoreceptors. Chronic administration of fluoxetine elicited similar behavioural effects in WT and 5-HT4R KO mice on anxiety-and depression-related tests. Following OBX, locomotor hyperactivity and anxiety were similar in both genotypes. Interestingly, chronic fluoxetine failed to reverse this OBX-induced syndrome in 5-HT4R KO mice, a response associated with differential effects in hippocampal neuroplasticity biomarkers. Fluoxetine reduced hippocampal Arc and BDNF mRNA expressions in WT but not 5-HT4R KO mice subjected to OBX. These results demonstrate that the absence of 5-HT4Rs triggers adaptive changes that could maintain emotional states, and that the behavioural and molecular effects of fluoxetine under pathological depression appear to be critically dependent on 5-HT4Rs
机译:临床研究支持5-HT4受体(5-HT4Rs)在抑郁和焦虑中的关键作用,但是它们对抑郁和焦虑样行为的影响以及抗抑郁药的作用仍然部分未知。我们评估了5-HT4R基因敲除(KO)小鼠在不同的焦虑和抑郁范例中以及某些神经可塑性标记(BDNF,trkB和Arc)的mRNA表达以及5-HT1AR的功能。此外,在两种基因型的幼稚和嗅觉性球囊切除小鼠(OBX)中评估了5-HT4Rs在长期服用氟西汀的行为和分子效应中的意义。 5-HT4R KO小鼠几乎没有表现出特定的行为障碍,包括在旷野中减少中央活动(焦虑),减少蔗糖消耗和筑巢行为(无饥饿感)。在这些小鼠中,我们测量了海马中BDNF和Arc mRNA的水平升高和trkB mRNA的水平降低,以及5-HT1A自身受体脱敏。长期服用氟西汀在焦虑症和抑郁症相关测试中在WT和5-HT4R KO小鼠中引起类似的行为效应。 OBX后,两种基因型的运动过度活跃和焦虑相似。有趣的是,慢性氟西汀不能逆转5-HT4R KO小鼠中的OBX诱导的综合征,这种应答与海马神经可塑性生物标志物的不同作用有关。氟西汀可降低野生型OBX的WT小鼠的海马Arc和BDNF mRNA表达,但不会降低5-HT4R KO小鼠的海马Arc和BDNF mRNA表达。这些结果表明,5-HT4Rs的缺失会触发可维持情绪状态的适应性变化,而在病理性抑郁症下氟西汀的行为和分子效应似乎严重依赖于5-HT4Rs。

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