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首页> 外文期刊>Neuropharmacology >Serotonin 5-HT1A, 5-HT2A and dopamine D2 receptors strongly influence prefronto-hippocampal neural networks in alert mice: Contribution to the actions of risperidone
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Serotonin 5-HT1A, 5-HT2A and dopamine D2 receptors strongly influence prefronto-hippocampal neural networks in alert mice: Contribution to the actions of risperidone

机译:血清素5-HT1A,5-HT2A和多巴胺D2受体强烈影响预选的海马神经网络在警报小鼠中:对Risperidone的作用的贡献

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Atypical antipsychotic drugs (APDs) used to treat positive and negative symptoms in schizophrenia block serotonin receptors 5-HT2AR and dopamine receptors D2R and stimulate 5-HT1AR directly or indirectly. However, the exact cellular mechanisms mediating their therapeutic actions remain unresolved. We recorded neural activity in the prefrontal cortex (PFC) and hippocampus (HPC) of freely-moving mice before and after acute administration of 5HT(1A)R, 5-HT2AR and D2R selective agonists and antagonists and atypical APD risperidone. We then investigated the contribution of the three receptors to the actions of risperidone on brain activity via statistical modeling and pharmacological reversal (risperidone + 5-HT1AR antagonist WAY-100635, risperidone + 5-HT2A/2CR agonist DOI, risperidone + D2R agonist quinpirole). Risperidone, 5-HT1AR agonism with 8-OH-DPAT, 5-HT2AR antagonism with M100907, and D2R antagonism with haloperidol reduced locomotor activity of mice that correlated with a suppression of neural spiking, power of theta and gamma oscillations in PFC and HPC, and reduction of PFCHPC theta phase synchronization. By contrast, activation of 5-HT2AR with DOI enhanced high-gamma oscillations in PFC and PFC-HPC high gamma functional connectivity, likely related to its hallucinogenic effects. Together, power changes, regression modeling and pharmacological reversals suggest an important role of 5-HT1AR agonism and 5-HT2AR antagonism in risperidone-induced alterations of delta, beta and gamma oscillations, while D2R antagonism may contribute to risperidone-mediated changes in delta oscillations. This study provides novel insight into the neural mechanisms for widely prescribed psychiatric medication targeting the serotonin and dopamine systems in two regions involved in the pathophysiology of schizophrenia.
机译:用于治疗精神分裂症中血清素受体5-HT2AR和多巴胺受体D2R和直接或间接刺激5-HT1AR中的非典型抗精神病药(APDS)。然而,调解其治疗行动的确切细胞机制仍未得到解决。在急性施用5Ht(1A)R,5-HT2AR和D2R选择性激动剂和拮抗剂和非典型APD risperidone之前和之后,我们在自由移动小鼠的前额叶皮质(PFC)和海马(HPC)中记录了自由移动小鼠的神经活动。然后,我们调查了三种受体通过统计建模和药理学逆转(Risperidone + 5-HT1AR拮抗剂Way-100635,Risperidone + 5-HT2A / 2Cr激动剂Doi,Risperidone + D2R激动剂喹啉代购。利培酮,5-HT1AR抗激动性,具有8-OH-DPAT,5-HT2AR对拮抗作用,具有M100907的D2R拮抗醇,与Haloperidol降低了与PFC和HPC中的神经尖峰,θ和γ振荡的抑制相关的小鼠的运动活性,并减少PFCHPCθ相位同步。相比之下,在PFC和PFC-HPC高γ功能连通性中激活5-HT2AR的高γ振荡,可能与其致幻效应有关。电力变化,回归建模和药理学逆转表明5-HT1AR激动性和5-HT2AR对δ,β和γ振荡的改变的重要作用,而D2R拮抗作用可能有助于δ振荡的血红腺介导的变化。本研究提供了对靶向血清素和多巴胺系统的广泛规定的精神病药物的神经机制的新颖洞察力,这是精神分裂症病理生理病理学的两个地区。

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