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大鼠食物摄入量和能量代谢随慢性纳曲酮输注的变化

Modifications in food intake and energy metabolism in rats as a function of chronic naltrexone infusions.

作者信息

Marks-Kaufman R, Balmagiya T, Gross E

出版信息

Pharmacol Biochem Behav. 1984 Jun;20(6):911-6. doi: 10.1016/0091-3057(84)90016-9.

Abstract

The effects of chronic naltrexone infusions on food intake and energy balance were examined in male rats. Animals were fed either Purina Chow, or chow plus a 32% sucrose solution. After one week of being maintained on these diets, animals were implanted (intrascapularly) with osmotic minipumps infusing either 200 micrograms/kg/hr naltrexone hydrochloride or saline. Sucrose + chow-fed animals exhibited increased O2 consumption, increased CO2 production and an elevation in the respiratory quotient (RQ) relative to chow-fed controls. When infused with naltrexone, sucrose + chow-fed animals decreased food intake and body weight gain. While chow-fed animals also suppressed food intake and body weight gain, these decreases were not as great as those observed in sucrose + chow-fed animals. As a function of naltrexone administration, both chow-fed and sucrose + chow-fed animals altered their metabolism as reflected by decreased RQ and adiposity as determined by skinfold measurements. In addition, sucrose feeding led to a hyperthermia which was reversed by naltrexone infusions. Thus, chronic naltrexone administration depressed appetite, reduced energy production and induced hypothermia in rats. As naltrexone is thought to block the endogenous opioid system, this suggests that the endorphins are involved in the regulation of food intake and thermogenesis.

摘要

在雄性大鼠中研究了慢性注射纳曲酮对食物摄入和能量平衡的影响。动物被喂食普瑞纳饲料,或饲料加32%的蔗糖溶液。在这些饮食条件下维持一周后,给动物(肩胛间)植入渗透微型泵,分别注射200微克/千克/小时的盐酸纳曲酮或生理盐水。与仅喂食饲料的对照组相比,喂食蔗糖加饲料的动物氧气消耗量增加、二氧化碳产生量增加且呼吸商(RQ)升高。当注射纳曲酮时,喂食蔗糖加饲料的动物食物摄入量和体重增加量减少。虽然仅喂食饲料的动物也抑制了食物摄入和体重增加,但这些减少不如在喂食蔗糖加饲料的动物中观察到的那么明显。作为纳曲酮给药的一个作用,仅喂食饲料和喂食蔗糖加饲料的动物都改变了它们的新陈代谢,这表现为呼吸商降低,并且通过皮褶测量确定肥胖程度降低。此外,喂食蔗糖导致体温过高,而注射纳曲酮可使其恢复正常。因此,慢性注射纳曲酮会抑制大鼠的食欲、减少能量产生并导致体温过低。由于纳曲酮被认为会阻断内源性阿片系统,这表明内啡肽参与了食物摄入和产热的调节。

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