首页> 外文期刊>American Journal of Physiology >Activation of mesolimbic dopamine neurons during novel and daily limited access to palatable food is blocked by the opioid antagonist LY255582
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Activation of mesolimbic dopamine neurons during novel and daily limited access to palatable food is blocked by the opioid antagonist LY255582

机译:阿片类拮抗剂LY255582阻止新型和每日有限进食可食性中脑边缘多巴胺神经元的活化

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摘要

An analog of the trans-3,4-dimethyl-4-(3-hydroxyphenyI)piperidine series (LY255582) exhibits high in vitro binding affinity and antagonist potency for the mu-, 8-, and K-opioid receptors. In vivo, LY255582 exhibits potent effects in reducing food intake and body weight in several rodent models of obesity. In the present study, we evaluated the effects of LY255582 to prevent the consumption of a highly palatable (HP) diet (a high-fat/ high-carbohydrate diet) both when the food was novel and following daily limited access to the HP diet. Additionally, we examined the effects of consumption of the HP diet and of LY255582 treatment on mesolimbic dopamine (DA) signaling by in vivo microdialysis. Consumption of the HP diet increased extracellular DA levels within the nucleus accumbens (NAc) shell. Increased DA in the NAc shell was not related to the quantity of the HP diet consumed, and the DA response did not habituate following daily scheduled access to the HP diet. Interestingly, treatment with LY255582 inhibited consumption of the HP diet and the HP diet-associated increase in NAc shell DA levels. Moreover, the increased HP diet consumption observed following daily limited access to the HP diet was completely prevented by LY255582 treatment. LY255582 may be a useful tool in understanding the neural mechanisms involved in the reinforcement mechanisms regulating food intake.
机译:反式-3,4-二甲基-4-(3-羟基苯基)哌啶系列(LY255582)的类似物对mu-,8-和K-阿片受体具有很高的体外结合亲和力和拮抗作用。在体内,LY255582在几种肥胖的啮齿动物模型中显示出有效减少食物摄入和减轻体重的作用。在本研究中,我们评估了LY255582防止在食用新颖食物和每天限制使用HP饮食的情况下防止食用高口感(HP)饮食(高脂/高碳水化合物饮食)的效果。此外,我们通过体内微透析检查了食用HP饮食和LY255582治疗对中脑边缘多巴胺(DA)信号的影响。食用HP饮食会增加伏伏核(NAc)壳内的细胞外DA水平。 NAc外壳中DA的增加与HP饮食的摄入量无关,并且每日按计划使用HP饮食后,DA反应也没有适应性。有趣的是,用LY255582进行的治疗抑制了HP饮食的消耗以及与HP饮食相关的NAc外壳DA水平的增加。此外,LY255582治疗完全阻止了每日有限摄入HP饮食后观察到的HP饮食消耗的增加。 LY255582可能是了解参与调节食物摄入的增强机制的神经机制的有用工具。

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