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Disruption of prefrontal cortical-hippocampal balance in a developmental model of schizophrenia: reversal by sulpiride

机译:精神分裂症发育模型中追究性皮层海马平衡的破坏:硫葡萄项逆转

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摘要

The nucleus accumbens (NAc) receives converging inputs from the medial prefrontal cortex (mPFC) and the hippocampus which have competitive interactions in the NAc to influence motivational drive. We have previously shown altered synaptic plasticity in the hippocampal-NAc pathway in the MAM developmental model of schizophrenia in rodents that is dependent on cortical inputs. Thus, because mPFC-hippocampal balance is known to be partially altered in this model, we investigated potential pathological changes in the hippocampal influence over cortex-driven NAc spike activity. Here we show that the reciprocal interaction between the hippocampus and mPFC is absent in MAM animals but is able to be reinstated with the administration of the antipsychotic drug, sulpiride. The lack of interaction between these structures in this model could explain the attentional deficits in schizophrenia patients and shed light onto their inability to focus on a single task.
机译:伏伏核(NAc)从内侧前额叶皮层(mPFC)和海马接收会聚的输入,它们在NAc中具有竞争性相互作用,从而影响动机驱动力。我们先前已经证明,啮齿类动物的精神分裂症MAM发育模型中海马NAc途径的突触可塑性改变,这取决于皮层输入。因此,因为已知在该模型中mPFC-海马平衡会部分改变,所以我们研究了对皮质驱动的NAc刺突活性的海马影响的潜在病理变化。在这里,我们表明,在MAM动物中海马与mPFC之间没有相互的相互作用,但是可以通过服用抗精神病药舒必利来恢复。在此模型中,这些结构之间缺乏相互作用,可以解释精神分裂症患者的注意缺陷,并阐明他们无法专注于一项任务。

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