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The hippocampal to prefrontal cortex circuit in mice: a promising electrophysiological signature in models for psychiatric disorders

机译:小鼠海马至前额叶皮层回路:精神疾病模型中有希望的电生理特征

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Interaction between the hippocampus and the medial prefrontal cortex (mPFC) has been identified as a key target in several neuropsychiatric disorders. However, the hippocampus-mPFC (H-PFC) pathway has not been outlined in mice, which are increasingly the leading choice for new animal models for neurological disorders. Our results, establish the existence of a topographical, monosynaptic pathway originating exclusively from the ventral CA1 and subiculum to the mPFC. Functional connectivity of the H-PFC pathway, examined in vivo through field potential recordings in the prelimbic mPFC after high-frequency stimulation of the hippocampal outflow, demonstrates an induction of a significant long lasting long-term potentiation, which is stable for at least one hour and strongly impaired by exposure to acute stress. Given that stress exposure is known to have serious detrimental effects on prefrontal cortical functioning and is considered a major risk factor for several neuropsychiatric disorders, the present study provides a crucial animal model of neural interaction and response to environmental stress which could lend itself to the study of disruption of brain circuits and test for potential drug candidates.
机译:海马与前额内侧皮层(mPFC)之间的相互作用已被确定为几种神经精神疾病的主要靶标。然而,尚未在小鼠中概述海马-mPFC(H-PFC)途径,这已成为神经疾病新动物模型的主要选择。我们的结果建立了仅从腹侧CA1和下丘脑到mPFC的地形,单突触通路的存在。 H-PFC通路的功能连通性,在高频刺激海马流出后,通过前肢mPFC中的场电势记录进行了体内检查,结果表明可诱导显着的长期长期增强作用,这种稳定作用至少对一种稳定小时,并因暴露于急性压力而严重受损。考虑到已知压力暴露会对前额叶皮层功能产生严重的有害影响,并且被认为是几种神经精神疾病的主要危险因素,因此本研究提供了重要的神经相互作用和对环境压力反应的动物模型,这可能有助于该研究脑回路的破坏,并测试潜在的候选药物。

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