首页> 美国卫生研究院文献>Genes >Enrichment Environment Positively Influences Depression- and Anxiety-Like Behavior in Serotonin Transporter Knockout Rats through the Modulation of Neuroplasticity Spine and GABAergic Markers
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Enrichment Environment Positively Influences Depression- and Anxiety-Like Behavior in Serotonin Transporter Knockout Rats through the Modulation of Neuroplasticity Spine and GABAergic Markers

机译:富集环境通过神经塑性脊柱和胃肠杆菌标志物的调节积极影响血清素转运蛋白敲除大鼠的抑郁和焦虑的行为

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摘要

The serotonin transporter (5-HTT in humans, SERT in rodents) is the main regulator of serotonergic transmission in the brain. The short allelic variant of the 5-HTT gene is in humans associated with psychopathologies and may enhance the vulnerability to develop depression after exposure to stressful events. Interestingly, the short allele also increases the sensitivity to a positive environment, which may buffer the vulnerability to depression. Since this polymorphism does not exist in rodents, male SERT knockout (SERT−/−) rats were tested to explore the molecular mechanisms based on this increased predisposition. This article investigates the influences of a positive manipulation, namely, enriched environment (EE), on the depressive-like behavior observed in SERT−/− rats. We found that one month of EE exposure normalized the anhedonic and anxious-like phenotype characteristics of this animal model. Moreover, we observed that EE exposure also restored the molecular alterations in the prefrontal cortex by positively modulating the expression of the neurotrophin Bdnf, and of spines and gamma-aminobutyric acid (GABA)ergic markers. Overall, our data confirm the depression-like phenotype of SERT−/− rats and highlight the ability of EE to restore behavioral and molecular alterations, thus promoting the opportunity to use EE as a supporting non-pharmacological approach to treat mood disorders.
机译:血清素转运蛋白(5-HTT在人类中,啮齿动物的SERT)是大脑中血清on的主要调节剂。 5-HTT基因的短等位基因变体在与精神病理学相关的人中,并且可以增强在暴露于压力事件后发育抑郁的脆弱性。有趣的是,短的等位基因还增加了对积极环境的敏感性,这可能会缓冲抑郁症的脆弱性。由于该多态性在啮齿动物中不存在,因此测试雄性SERT敲除(SERT - / - )大鼠以探讨基于这种增加的易感性的分子机制。本文研究了积极操纵,即富含富含环境(EE)的影响,从塞特/ - 大鼠观察到的抑郁样行为。我们发现一个月的EE暴露标准化了这种动物模型的厌氧和焦虑的表型特征。此外,我们观察到EE暴露还通过阳性调节神经营养蛋白BDNF的表达和刺和γ-氨基丁酸(GABA)ERGIC标记物的表达恢复了前额叶皮质中的分子改变。总体而言,我们的数据确认了SERT / - 大鼠的抑郁样表型,并突出了EE恢复行为和分子改变的能力,从而促进使用EE作为治疗情绪障碍的支持的非药理学方法的机会。

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