首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Inhibiting parabrachial fatty acid amide hydrolase activity selectively increases the intake of palatable food via cannabinoid CB1 receptors
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Inhibiting parabrachial fatty acid amide hydrolase activity selectively increases the intake of palatable food via cannabinoid CB1 receptors

机译:抑制臂旁脂肪酸酰胺水解酶的活性通过大麻素CB1受体选择性地增加可口食品的摄入量

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摘要

These studies investigated feeding responses to indirect activation of parabrachial cannabinoid CB1 receptors. Arachidonoyl serotonin (AA5HT), an inhibitor of the endocannabinoid degradative enzyme, fatty acid amide hydrolase (FAAH), was infused into the parabrachial nucleus of male Sprague-Dawley rats, and intakes of high-fat/sucrose pellets and standard rodent chow were subsequently evaluated under various feeding schedules. FAAH blockade stimulated the intake of high-fat/sucrose pellets that were presented daily for 4 h during the light period, with compensatory decreases in the consumption of standard chow during the ensuing 20 h. These diet-selective changes were repeated on the next day, indicating a shift in feeding toward the more palatable diet that lasted for 48 h after a single infusion. The cannabinoid CB1 receptor antagonist, AM251, blocked the orexigenic actions of AA5HT, implicating CB1 receptors in mediating the feeding responses to FAAH inactivation. When the feeding schedule was reversed, AA5HT produced nominal increases in the consumption of standard chow for the 4-h access period, but substantial increases in the intake of high-fat/sucrose during the following 20-h interval. When presented with only high-fat/sucrose diet for 24 h, AA5HT increased 24-h food intake. In contrast, when given 24-h access only to standard chow, AA5HT failed to affect intake. Therefore, indirectly activating parabrachial CB1 receptors by blocking the degradation of native ligands selectively stimulates the intake of palatable food, with differential actions on total energy intake depending upon the feeding schedule. Our results support a role for parabrachial cannabinoid mechanisms in providing physiological regulation to neural substrates modulating feeding, energy balance, and behavioral responses for natural reward.
机译:这些研究调查了对臂旁副大麻素CB1受体间接激活的摄食反应。向雄性Sprague-Dawley大鼠的臂旁核中注入花生四烯酸羟色胺(AA5HT)(一种内源性大麻素降解酶,脂肪酸酰胺水解酶(FAAH)的抑制剂),随后摄入高脂/蔗糖颗粒和标准啮齿动物食物根据各种喂养计划进行评估。 FAAH封锁刺激了高脂/蔗糖颗粒的摄入,该颗粒在光照期间每天出现4小时,在随后的20小时内补偿了标准食物的消耗。这些饮食选择的变化在第二天重复出现,这表明在单次输注后持续48小时的饮食转向了更加可口的饮食。大麻素CB1受体拮抗剂AM251阻断了AA5HT的致癌作用,暗示CB1受体介导FAAH失活的摄食反应。当喂食时间表被逆转时,AA5HT在4小时取食期间的标准饲料消耗量名义上增加,但在接下来的20小时间隔内高脂/蔗糖的摄入量则显着增加。当仅以高脂/蔗糖饮食提供24小时时,AA5HT可增加24小时食物摄入量。相反,当仅在24小时内使用标准食物时,AA5HT无法影响摄入量。因此,通过阻止天然配体的降解来间接激活臂臂旁CB1受体选择性地刺激了可口食物的摄入,对总能量摄入的作用取决于饲养时间表。我们的研究结果支持臂旁大麻素机制在为神经基质提供生理调节,调节进食,能量平衡和行为反应以获取自然报酬方面发挥作用。

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