首页> 外文期刊>Neuropsychopharmacology >Risperidone Dose-Dependently Increases Extracellular Concentrations of Serotonin in the Rat Frontal Cortex: Role of |[alpha]|2 |[ndash]|Adrenoceptor Antagonism
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Risperidone Dose-Dependently Increases Extracellular Concentrations of Serotonin in the Rat Frontal Cortex: Role of |[alpha]|2 |[ndash]|Adrenoceptor Antagonism

机译:利培酮剂量依赖性增加大鼠额叶皮质中5-羟色胺的细胞外浓度:|α| 2 | ndash |肾上腺素受体拮抗作用

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We have previously shown that risperidone, an antipsychotic drug with high affinity for 5-hydroxytryptamine (5-HT)2A and dopamine (DA)2 receptors, as well as for α1- and α2-adrenoceptors, enhances 5-HT metabolism selectively in the rat frontal cortex (FC). To further study the influence of risperidone on central 5-HT systems, we compared its effects on dialysate 5-HT in the FC, as assessed by microdialysis, with those obtained with other antipsychotic drugs, i.e., clozapine, haloperidol, and amperozide, as well as with the selective α2- or 5-HT2A receptor antagonists idazoxan or MDL 100,907, respectively. The underlying mechanism for risperidone’s effect on 5-HT output in the FC was also investigated using single-cell recording in the dorsal raphe nucleus (DRN). Administration of risperidone (0.2, 0.6, and 2.0 mg/kg, SC) dose-dependently increased 5-HT levels in the FC. This stimulatory action was mimicked by amperozide (10 mg/kg, SC) and, to some extent, by idazoxan (0.25 mg/kg, SC). In contrast, clozapine (10 mg/kg, SC), haloperidol (2.0 mg/kg, SC), and MDL 100,907 (1.0 mg/kg, SC) exerted only minor effects on 5-HT output in brain. Local administration of risperidone or idazoxan (1.0–1000 μmol/L) in the FC dose-dependently increased dialysate levels of 5-HT in this region. On the other hand, risperidone 25-800 μg/kg, IV) dose-dependently decreased the firing rate of 5-HT cells in the DRN, an effect that was largely antagonized by pretreatment with the selective 5-HT1A receptor antagonist WAY 100,635 (5.0 μg/kg, IV). These results indicate that the risperidone-increased 5-HT output in the FC may be related to its α2-adrenoceptor antagonistic action, a property shared with both amperozide and idazoxan, and that this action probably is executed at the nerve terminal level. The inhibition of 5-HT cell firing by risperidone is probably secondary to increased 5-HT availability, e.g., in the DRN, since it could be antagonized by a 5-HT1A receptor antagonist. The enhanced 5-HT output in the FC by risperidone may be of particular relevance for the treatment of schizophrenia when associated with depression and in schizoaffective disorder.
机译:我们先前已经证明,利培酮是一种抗精神病药物,对5-羟色胺(5-HT)2A和多巴胺(DA)2受体以及α1-和α2-肾上腺素受体具有高亲和力,可以选择性地增强5-羟色胺的代谢。大鼠额叶皮质(FC)。为了进一步研究利培酮对5-HT中枢系统的影响,我们比较了微透析对利培酮对FC中透析液5-HT的影响,并与其他抗精神病药物(如氯氮平,氟哌啶醇和安非他酮)比较以及选择性的α2-或5-HT2A受体拮抗剂艾达唑烷或MDL 100,907。利培酮对FC中5-HT输出的影响的潜在机制也通过使用背缝核(DRN)中的单细胞记录进行了研究。利培酮(0.2、0.6和2.0 mg / kg,SC)的给药剂量依赖性地增加FC中的5-HT水平。这种刺激作用被安非他酮(10 mg / kg,SC)模仿,并在某种程度上被咪唑烷(0.25 mg / kg,SC)模仿。相比之下,氯氮平(10 mg / kg,SC),氟哌啶醇(2.0 mg / kg,SC)和MDL 100,907(1.0 mg / kg,SC)对脑内5-HT的输出影响较小。在FC中局部给予利培酮或异唑烷酮(1.0-1000μmol/ L)可剂量依赖性地增加该区域5-HT的透析液水平。另一方面,利培酮25-800μg/ kg,IV)剂量依赖性地降低了DRN中5-HT细胞的放电速率,这一作用在很大程度上被选择性5-HT1A受体拮抗剂WAY 100,635( 5.0μg/ kg,静脉注射)。这些结果表明,FC中利培酮增加的5-HT产量可能与其α2-肾上腺素受体拮抗作用有关,这是与安非塞德和伊达唑烷共有的一种性质,并且该作用可能在神经末梢水平执行。利培酮对5-HT细胞发射的抑制作用可能是继5-HT可用性增加之后的继发作用,例如在DRN中,因为它可能会与5-HT1A受体拮抗剂拮抗。当与抑郁症和精神分裂症相关时,利培酮在FC中增强的5-HT输出可能与精神分裂症的治疗特别相关。

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