首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Chronic psychosocial stress alters NPY system: different effects in rat and tree shrew.
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Chronic psychosocial stress alters NPY system: different effects in rat and tree shrew.

机译:慢性社会心理压力会改变NPY系统:对老鼠和树tree的影响不同。

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The neuropeptide Y (NPY) system has been largely studied in relation to affective disorders, in particular for its role in the mechanisms regulating the pathophysiology of anxiety and depression and in the stress-related behaviours. Although NPY has been previously investigated in a variety of animal models of mood disorders, the receptor subtype mainly involved in the modulation of the stress response has not been identified. In the present study, the chronic psychosocial stress based on the resident-intruder protocol-an ethologically relevant paradigm known to induce behavioural and endocrine modifications which mimic depression-like symptoms-was used. Two different species were investigated: rat and tree shrew (Tupaia belangeri); the latter is regarded as an intermediate between insectivores and primates and it was chosen in this study for its pronounced territoriality. In these animals, the regulation of NPY and of Y(1), Y(2) and Y(5) receptors mRNA expression was evaluated after chronic stress and chronic antidepressant treatment by in situ hybridization in selected brain regions known to be involved in the pathophysiology of mood disorders. The animals were exposed to psychosocial stress for 35 days and concomitant daily fluoxetine treatment (10 mg/kg for rats and 15 mg/kg for tree shrews) after the first week of stress. The results confirmed a major role for hippocampal and hypothalamic NPY system in the pathophysiology of mood disorders. Although there were no evident differences between rat and tree shrew in the NPY system distribution, an opposite effect of chronic psychosocial stress was observed in the two species. Moreover, chronic antidepressant treatment was able to counteract the effects of stress and restored basal expression levels, suggesting the utility of these paradigms as preclinical models of stress-induced depression. Overall, although evident species differences were found in response to chronic psychosocial stress, the present study suggests a role for NPY receptors in the stress response and in the action of antidepressant drugs, providing further support for an involvement of this neuropeptidergic system in the pathophysiology of depression and anxiety.
机译:已经对与情感障碍有关的神经肽Y(NPY)系统进行了大量研究,尤其是其在调节焦虑和抑郁的病理生理机制以及与压力相关的行为中的作用。尽管先前已经在各种情绪障碍动物模型中研究了NPY,但尚未发现主要参与应激反应调节的受体亚型。在本研究中,使用了基于常驻入侵者协议的慢性心理压力,这是一种与伦理学相关的范式,已知会诱发模仿抑郁症样症状的行为和内分泌改变。研究了两种不同的物种:鼠and和树sh(Tupaia belangeri)。后者被认为是食虫和灵长类动物之间的中间产物,在本研究中因其明显的地域性而被选择。在这些动物中,在慢性应激和慢性抗抑郁药治疗后,通过在选定的已知参与大脑活动的大脑区域进行原位杂交,评估了NPY和Y(1),Y(2)和Y(5)受体mRNA表达的调节。情绪障碍的病理生理学。在应激的第一周后,将这些动物暴露于社会心理压力下35天,并每日接受氟西汀的每日治疗(大鼠10 mg / kg,树tree 15 mg / kg)。该结果证实了海马和下丘脑NPY系统在情绪障碍的病理生理中的重要作用。尽管在NPY系统分布中老鼠和树sh之间没有明显差异,但是在这两个物种中观察到了慢性心理压力的相​​反作用。此外,慢性抗抑郁治疗能够抵消压力的影响并恢复基础表达水平,表明这些范例可作为压力诱发抑郁症的临床前模型。总体而言,尽管发现了对慢性心理社会应激反应的明显物种差异,但本研究表明NPY受体在应激反应和抗抑郁药的作用中发挥了作用,为该神经肽能系统参与病理生理提供了进一步的支持。抑郁和焦虑。

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