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Leptin reduces food intake via a dopamine D2 receptor-dependent mechanism

机译:瘦素通过多巴胺D2受体依赖性机制减少食物摄入

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Food intake is generally accepted to be regulated by the melanocortin system, however recent data suggests that mesolimbic dopaminergic neurons also influence food intake. Whether dopamine signaling is crucial for the acute effect of leptin on feeding is unknown. Using pharmacological and genetic strategies, we tested the hypothesis that the acute inhibitory effect of leptin on food intake is partially mediated by dopamine. Dopamine D2 but not D1 receptor blockade attenuated the acute hypophagic effect of leptin in fasted mice. Additionally, mice lacking the D2R (D2R KO) exhibited an attenuated response to leptin. Conversely, dopamine receptor blockade had no effect on the acute hypophagic effect of melanocortin stimulation or the hyperphagic effect of ghrelin. These findings suggest that dopaminergic pathways do not constitute a normal part of melanocortin-dependent feeding regulation and that the dopaminergic neurocircuitry typically associated with regulation of hedonic feeding likely contributes to feeding regulation by leptin.
机译:食物摄入通常被认为是由黑皮质素系统调节的,但是最近的数据表明中脑边缘多巴胺能神经元也会影响食物摄入。多巴胺信号传导对于瘦素对进食的急性作用是否至关重要尚不清楚。使用药理和遗传策略,我们测试了以下假设:瘦素对食物摄入的急性抑制作用部分由多巴胺介导。多巴胺D2而非D1受体的阻滞减弱了在禁食小鼠中瘦素的急性低吞咽作用。另外,缺乏D2R(D2R KO)的小鼠对瘦素的反应减弱。相反,多巴胺受体阻滞对黑皮质素刺激的急性低吞噬作用或生长素释放肽的高吞噬作用没有影响。这些发现表明,多巴胺能途径不构成黑皮质素依赖性喂养调节的正常部分,并且通常与享乐性喂养调节相关的多巴胺能神经回路可能有助于瘦素对喂养的调节。

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