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首页> 外文期刊>Acta physiologica >Blunted leptin sensitivity during hedonic overeating can be reinstated by activating galanin 2 receptors (Gal2R) in the lateral hypothalamus
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Blunted leptin sensitivity during hedonic overeating can be reinstated by activating galanin 2 receptors (Gal2R) in the lateral hypothalamus

机译:通过在外侧下丘脑中激活甘油蛋白2受体(GAL2R),可以通过激活甘油蛋白2受体(GAL2R)来恢复在横向下丘脑中的钝化瘦素敏感性

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Abstract Aim Since foods with high hedonic value are often consumed in excess of energetic needs, this study was designed to identify the mechanisms that may counter anorexigenic signalling in the presence of hedonic foods in lean animals. Methods Mice, in different states of satiety (fed/fasted, or fed/fasted and treated with ghrelin or leptin, respectively), were allowed to choose between high‐fat/high‐sucrose and standard foods. Intake of each food type and the activity of hypothalamic neuropetidergic neurons that regulate appetite were monitored. In some cases, food choice was monitored in leptin‐injected fasted mice that received microinjections of galanin receptor agonists into the lateral hypothalamus. Results Appetite‐stimulating orexin neurons in the lateral hypothalamus are rapidly activated when lean, satiated mice consume a highly palatable food (PF); such activation (upregulated c‐Fos expression) occurred even after administration of the anorexigenic hormone leptin and despite intact leptin signalling in the hypothalamus. The ability of leptin to restrain PF eating is restored when a galanin receptor 2 (Gal2R) agonist is injected into the lateral hypothalamus. Conclusion Hedonically‐loaded foods interrupt the inhibitory actions of leptin on orexin neurons and interfere with the homeostatic control of feeding. Overeating of palatable foods can be curtailed in lean animals by activating Gal2R in the lateral hypothalamus.
机译:摘要目的,因为具有高诸如蜂窝价值的食物,这些研究往往超过了能量需求,旨在识别可能在贫动物中存在杂种食品中的厌氧信号传导的机制。方法在不同饱腹饱食状态(进料/禁食或喂食/禁食和用Ghrelin或Leptin治疗)的不同状态,允许在高脂/高蔗糖和标准食品之间进行选择。摄入每种食物类型和调节食欲的下丘脑神经细菌神经元的活性。在一些情况下,在瘦素注射的禁食小鼠中监测食品选择,该小鼠接受了甘肽受体激动剂的显微注射到侧丘脑中。结果在瘦的小鼠消耗高可口的食物(PF)时,侧面下丘脑中的食欲刺激的食欲刺激性奥克替蛋白神经元在稀释时迅速激活;即使在给予厌氧激素瘦素后,甚至发生这种激活(上调的C-FOS表达),尽管下丘脑中的完整瘦素信号传导。当环烷受体2(GAL2R)激动剂注入侧丘脑时,瘦素抑制PF进食的能力恢复。结论HEDONICLIPLICALED食品中断瘦蛋白在orexin神经元的抑制作用,干扰喂养的稳态控制。通过在侧面下丘脑中激活GAL2R,可以在精益动物中缩减可口食物的暴饮暴食。

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