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首页> 外文期刊>American Journal of Physiology >Central ghrelin increases food foraging/hoarding that is blocked by GHSR antagonism and attenuates hypothalamic paraventricular nucleus neuronal activation
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Central ghrelin increases food foraging/hoarding that is blocked by GHSR antagonism and attenuates hypothalamic paraventricular nucleus neuronal activation

机译:中央Ghrelin增加了由GHSR拮抗作用阻止的食品觅食/囤积,并衰减下丘脑椎间盘内核神经元激活

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摘要

The stomach-derived "hunger hormone" ghrelin increases in the circulation in direct response to time since the last meal, increasing preprandially and falling immediately following food consumption. We found previously that peripheral injection of ghrelin potently stimulates food foraging (FF), food hoarding (FH), and food intake (FI) in Siberian hamsters. It remains, however, largely unknown if central ghrelin stimulation is necessary/sufficient to increase these behaviors regardless of peripheral stimulation of the ghrelin receptor [growth hormone secretagogue receptor (GHSR)]. We injected three doses (0.01, 0.1, and 1.0 mug) of ghrelin into the third ventricle (3 V) of Siberian hamsters and measured changes in FF, FH, and FI. To test the effects of 3V ghrelin receptor blockade, we used the potent GHSR antagonist JMV2959 to block these behaviors in response to food deprivation or a peripheral ghrelin challenge. Finally, we examined neuronal activation in the arcuate nucleus and paraventricular hypothalamic nucleus in response to peripheral ghrelin administration and 3V GHSR antagonism. Third ventricular ghrelin injection significantly increased FI through 24 h and FH through day 4. Pretreatment with 3V JMV2959 successfully blocked peripheral ghrelin-induced increases in FF, FH, and FI at all time points and food deprivation-induced increases in FF, FH, and FI up to 4 h. c-Fos immunore-activity was significantly reduced in the paraventricular hypothalamic nucleus, but not in the arcuate nucleus, following pretreatment with intraperitoneal JMV2959 and ghrelin. Collectively, these data suggest that central GHSR activation is both necessary and sufficient to increase appetitive and consummatory behaviors in Siberian hamsters.
机译:胃衍生的“饥饿激素”Ghrelin在循环中增加,直接响应自最后一顿饭以来的时间,在食品消费后立即增加并立即下降。我们以前发现Ghrelin的外周注射有效地刺激了西伯利亚仓鼠的食物觅食(FF),食物囤积(FH)和食物摄入(FI)。然而,仍然存在很大程度上,如果需要中央Ghrelin刺激/足以增加这些行为,无论GHRELIN受体的外周刺激如何增加[生长激素促分泌因子(GHSR)]。我们将三个剂量(0.01,0.1和1.0米,0.0米,以1月的西伯利亚仓鼠(3 v)中的第三个脑室(3 v)中的,并测量FF,FH和FI的变化。为了测试3V Ghrelin受体阻滞的效果,我们使用了有效的GHSR拮抗剂JMV2959阻止这些行为响应食品剥夺或外周Ghrelin挑战。最后,我们响应于外周Ghrelin给药和3V GHSR拮抗作用,检查了弓形核和旁注核心核中的神经元激活。第三个心室Ghrelin注射蛋白注射通过24小时和FH至FH至FH。用3V JMV2959的预处理成功阻断了FF,FH和FI的外周Ghrelin诱导的增加,并且在所有时间点和食品剥夺诱导的FF,FH和最多4小时。在腹腔内下丘脑核中,C-FOS免疫活性显着降低,但在用腹膜内的JMV2959和GHRELIN进行预处理后,不在弓形核中。总的来说,这些数据表明中央GHSR激活都是必要的,并且足以提高西伯利亚仓鼠中的快乐和完善的行为。

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