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Alteration of cingulate long-term plasticity and behavioral sensitization to inflammation by environmental enrichment

机译:通过环境富集改变扣带回的长期可塑性和对炎症的行为敏感性

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摘要

Exposure to an enriched environment (EE) has been shown to induce cortical plasticity. Considerable amount of research is focused on the effects of EE in the hippocampus; however, effects of EE on other brain regions and the mechanisms involved are not well known. To investigate this, we induced cortical plasticity by placing mice in an EE for one month and measured the effects of EE in the anterior cingulate cortex (ACC). Here, we show that EE enhanced the expression of the plasticity gene, egr-1, in the ACC of EE animals accompanied by enhanced cingulate long-term potentiation (LTP) and decreased cingulate long-term depression (LTD). The increased NMDA receptor NR2B/NR2A subunits current ratio is associated with the plasticity seen in the ACC while total protein levels remain unchanged. Furthermore, behavioral experiments show that these mice exposed to EE demonstrate enhanced responses to acute and long-term inflammation. Our findings suggest that exposure to EE alters physiological properties within the ACC which results in enhanced responses to inflammation.
机译:研究表明,暴露于丰富的环境(EE)会诱导皮质可塑性。大量研究集中在EE对海马体的影响上。但是,EE对其他大脑区域的影响及其涉及的机制尚不清楚。为了对此进行研究,我们通过将小鼠放在EE中一个月来诱导皮质可塑性,并测量了EE在前扣带回皮质(ACC)中的作用。在这里,我们显示EE增强了EE动物在ACC中的可塑性基因egr-1的表达,同时伴随着扣带长期增强(LTP)和扣带长期抑郁(LTD)降低。 NMDA受体NR2B / NR2A亚基电流比率的增加与ACC中可塑性有关,而总蛋白水平保持不变。此外,行为实验表明,这些暴露于EE的小鼠表现出对急性和长期炎症的增强反应。我们的发现表明,暴露于EE会改变ACC内的生理特性,从而增强对炎症的反应。

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