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Change in serotonin metabolism in the rat brain in response to the repeated stimulus presentation

机译:重复刺激刺激后大鼠大脑中5-羟色胺代谢的变化

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The content of serotonin (5-HT), its metabolite 5-hydroxyindoleacetic acid (5-HIAA), monoamine oxidase (MAO) activity and kinetic parameters (K(m) and Vmax) for the reaction of 5-HT deamination, were examined in various regions of the rat brain after repeated presentation of a contextual stimulus. Habituation to the stimulus was accompanied by an increase of 5-HT metabolism and active transport of 5-HIAA in the amygdala, striatum and midbrain, while these changes were not found in the prefrontal cortex and hippocampus. Kinetic studies have revealed that the enhancement of 5-HT deamination by MAO in the brain structures was mediated by different catalytic mechanisms. A significant decrease in K(m) value for 5-HT deamination in the amygdala indicated an increase in the affinity of enzyme towards 5-HT. In the striatum the enhanced MAO activity was provided by increasing maximal rate of 5-HT deamination. It is concluded that an activation of presynaptic mechanisms of the serotonergic transmission in the amygdala and striatum is involved in the inhibition of biological significance and attention to repeated presentation of stimulus.
机译:检查了5-羟色胺(5-HT)的含量,其代谢物5-羟基吲哚乙酸(5-HIAA),单胺氧化酶(MAO)的活性以及5-HT脱氨反应的动力学参数(K(m)和Vmax)。重复出现情境刺激后,在大鼠大脑各个区域中都存在这种情况。刺激的习性伴随着杏仁核,纹状体和中脑中5-HT代谢的增加和5-HIAA的主动转运,而在额叶前额叶皮层和海马中未发现这些变化。动力学研究表明,MAO在大脑结构中增强了5-HT脱氨作用是由不同的催化机制介导的。杏仁核中5-HT脱氨基的K(m)值显着降低表明酶对5-HT的亲和力增加。在纹状体中,通过提高5-HT脱氨的最大速率来提供增强的MAO活性。结论是,杏仁核和纹状体中5-羟色胺能传递的突触前机制的激活与生物学意义的抑制和对重复刺激的关注有关。

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