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首页> 外文期刊>Behavioural Brain Research: An International Journal >Early weaning leads to disruption of homeostatic and hedonic eating behaviors and modulates serotonin (5HT) and dopamine (DA) systems in male adult rats
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Early weaning leads to disruption of homeostatic and hedonic eating behaviors and modulates serotonin (5HT) and dopamine (DA) systems in male adult rats

机译:早期断奶导致稳态和蜂窝饮食行为的破坏,并调节雄性成年大鼠中的血清素(5HT)和多巴胺(DA)系统

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摘要

Early weaning is associated with disruption of eating behavior. However, little is known about the mechanisms behind it. 5HT and DA systems are key regulators of homeostatic and hedonic eating behaviors, respectively. Thus, this study aims to evaluate the effects of early weaning on feeding behavior and 5HT and DA systems. For this, rats were submitted to regular (PND30) or early weaning (PND15) and between PND250 and PND300 were evaluated food intake of standard diet in response to 4 h food deprivation, during the 24 h period and per phase of the circadian cycle, in addition to the palatable food intake. Additionally, body mass and mRNA expression of 5HT1B, 5HT2C, SERT, DRD1 and DRD2 were evaluated in the hypothalamus and brainstem. The results demonstrate that early weaning promoted an increase in standard food intake in response to a 4 h food deprivation in the 24 h period and in the dark phase of the circadian cycle, in addition to an increased palatable food intake. No differences in body mass between regular or early weaning were observed. In the hypothalamus, increased mRNA expression of SERT and DRD1 was observed, but decreased 5HT1B mRNA expression. In the brainstem, the expression of 5HT1B, SERT, 5HT2C, DRD1 and DRD2 was increased in early weaned rats. In a nutshell, the stress promoted by early weaning has programmed the animals to be hyperphagic and to increase their palatable food intake, which was associated with modulation of 5HT and DA systems.
机译:早期断奶与饮食行为的破坏有关。但是,关于它背后的机制很少熟知。 5HT和DA系统分别是稳态和啤酒型饮食行为的关键调节因子。因此,本研究旨在评估早期断奶对喂养行为和5HT和DA系统的影响。为此,将大鼠提交至常规(PND30)或早期断奶(PND15),PND250和PND300之间评估了标准饮食的食物摄入,响应于4 H食物剥夺,在24小时和昼夜循环的每阶段,除了可口的食物摄入量。另外,在下丘脑和脑干中评估了5HT1B,5HT2C,SERT,DRD1和DRD2的体重和mRNA表达。结果表明,早期断奶促进了标准食物摄入量的增加,响应于24小时期间的4小时食物剥夺以及昼夜循环的黑暗阶段,除了可口摄入量增加。观察到常规或早期断奶之间的体重差异。在下丘脑中,观察到Sert和DRD1的增加的mRNA表达,但减少了5ht1b mRNA表达。在脑干中,早期断奶大鼠中,5HT1B,SERT,5HT2C,DRD1和DRD2的表达增加。简而言之,早期断奶促进的压力已经将这些动物编程为六核,并增加其可口的食物摄入,其与5HT和DA系统的调节相关。

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