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Decreased voluntary activity and amygdala levels of serotonin and dopamine in ovariectomized rats

机译:卵巢切除大鼠的血清5-羟色胺和多巴胺的自愿活动和杏仁核水平降低

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Estrogen is involved in numerous activities in the brain, such as learning, memory, fear, anxiety and mood. However, little is known about the pathways involved in the effects of estrogen in the brain. Therefore, to improve our understanding of the effects of estrogen, we examined the effects of ovariectomy (OVX)-a model of estrogen deficiency and menopause-on psychiatric functions, including voluntary activity. Female Wistar rats underwent OVX or sham operation. Voluntary momentum and circadian activity were monitored at 2 and 6 weeks, respectively. Rats also underwent microdialysis of the amygdala to determine serotonin (5-HT) and dopamine levels. Although the circadian rhythm was unchanged at 2 weeks, voluntary activity at 6 weeks was significantly lower in OVX rats than that in sham rats. This was due to significantly reduced voluntary activity in the 12-h dark phase, while no significant difference was detected in the 12-h light phase. Both 5-HT and dopamine levels in the amygdala were significantly lower in OVX rats than those in sham rats at 6 weeks after the procedure. In conclusion, these results indicate that estrogen is an important mediator of voluntary activity in rats, particularly during the dark phase. These effects of estrogen appear to involve reduced 5-HT and dopamine release in the amygdala. Further studies are needed to determine whether estrogen (and its deficiency) influences the synthesis, vesicular packaging, release, re-uptake and degradation of these transmitters.
机译:雌激素参与大脑的许多活动,例如学习,记忆,恐惧,焦虑和情绪。但是,关于脑中雌激素作用的途径知之甚少。因此,为了增进我们对雌激素作用的了解,我们检查了卵巢切除术(OVX)(一种雌激素缺乏和更年期模型)对包括自愿活动在内的精神功能的影响。 Wistar雌性大鼠进行OVX或假手术。在第2周和第6周分别监测自愿动量和昼夜节律活动。大鼠还接受杏仁核的微透析以确定5-羟色胺(5-HT)和多巴胺水平。尽管第2周的昼夜节律没有变化,但OVX大鼠第6周的自发活动明显低于假手术组。这是由于在12小时的黑暗阶段自愿活动明显减少,而在12小时的明亮阶段未发现明显差异。术后6周,OVX大鼠杏仁核中5-HT和多巴胺水平均显着低于假手术大鼠。总之,这些结果表明,雌激素是大鼠自发活动的重要介质,尤其是在黑暗期。雌激素的这些作用似乎与杏仁核中5-HT和多巴胺的释放减少有关。需要进一步的研究以确定雌激素(及其缺乏)是否影响这些递质的合成,囊泡包装,释放,再摄取和降解。

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