首页> 外文期刊>Stress: the international journal on the biology of stress >Chronic stress produces enduring decreases in novel stress-evoked c-fos mRNA expression in discrete brain regions of the rat.
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Chronic stress produces enduring decreases in novel stress-evoked c-fos mRNA expression in discrete brain regions of the rat.

机译:慢性应激在大鼠离散脑区的新型应激诱发的c-fos mRNA表达中产生持久性下降。

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摘要

Chronic stress produces numerous adaptations within the hypothalamic-pituitary-adrenal (HPA) axis that persist well after cessation of chronic stress. We previously demonstrated profound attenuation of HPA axis responses to novel environment 4-7 days following chronic stress. The present study tests the hypothesis that this HPA axis hyporesponsivity is associated with reductions in stress-evoked c-fos mRNA expression, a marker of neuronal activation, in discrete brain regions. Adult male Sprague-Dawley rats underwent 1 week of chronic variable stress (CVS), with unhandled rats serving as controls. Independent groups of control and CVS rats were exposed to novel environment at 16 h, 4 days, 7 days, or 30 days after CVS. Marked reductions of c-fos mRNA expression in the CVS group persisted for at least 30 days within the paraventricular nucleus of the hypothalamus, and for at least 1 week in rostroventrolateral septum and lateral hypothalamus. Lower levels of c-fos mRNA expression were observed at 16 h recovery in the ventrolateral medial preoptic area, basolateral amygdala, anterior cingulate cortex, and prelimbic cortex. The results demonstrate long-term alterations in neuronal activation within neurocircuits critical for regulation of physiological and psychological responses to stressors.
机译:慢性应激会在下丘脑-垂体-肾上腺(HPA)轴内产生许多适应性变化,这些适应性疾病在停止慢性应激后会持续存在。我们先前证明了慢性应激后4-7天,HPA轴对新环境的反应显着减弱。本研究测试了这一假设,即该HPA轴低反应性与离散脑区域中应激诱发的c-fos mRNA表达(神经元激活的标志物)的减少有关。成年雄性Sprague-Dawley大鼠经过1周的慢性可变应激(CVS),未处理的大鼠作为对照组。独立组的对照组和CVS大鼠在CVS后16小时,4天,7天或30天暴露于新环境。 CVS组中c-fos mRNA表达的明显下降在下丘脑室旁核内持续至少30天,在前室外侧隔和下丘脑外侧持续至少1周。恢复后16小时,在腹外侧内侧前视区,基底外侧杏仁核,前扣带回皮层和前缘皮层中观察到较低水平的c-fos mRNA表达。结果表明,神经回路内神经元激活的长期改变对于调节对应激物的生理和心理反应至关重要。

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