Department of Psychology and Princeton Neuroscience Institute, Princeton University, Princeton, New Jersey, USA.
Physiol Behav. 2010 Oct 5;101(3):394-400. doi: 10.1016/j.physbeh.2010.07.005. Epub 2010 Jul 16.
Obese humans and animals exhibit reduced functioning of the dopamine (DA) system in the nucleus accumbens (NAc). The question addressed here is whether this change in NAc DA can be detected in Sprague-Dawley rats that are prone to obesity on a fat-rich diet but still at normal body weight. Rats were subgrouped as "obesity-prone" (OP) or "obesity-resistant" (OR), based on their weight gain during 5days of access to a high-fat diet, and were then shifted to a lower-fat chow diet before microdialysis testing was performed. The OP rats compared to OR rats exhibited markedly reduced basal levels of DA in the NAc. After a high-fat challenge meal, both OP and OR rats showed a significant increase in extracellular DA and its metabolites; however, the NAc DA of the OP rats still remained at reduced levels. Also, the increase in DA and metabolite levels observed in OR rats after systemic administration of a fat emulsion was not evident in the OP rats, which instead showed no change in DA and a decrease in its metabolites. These results demonstrate, first, that fat can stimulate accumbal DA release and, second, that outbred rats prone to overeating and becoming obese on a palatable, fat-rich diet exhibit reduced signaling in the mesolimbic DA system while still at normal weight, suggesting that it may be causally related to their excess consummatory behavior.
肥胖的人类和动物的伏隔核(NAc)中的多巴胺(DA)系统功能降低。本文探讨的问题是,在高脂肪饮食易导致肥胖但体重仍正常的 Sprague-Dawley 大鼠中,是否可以检测到 NAc DA 的这种变化。根据大鼠在高脂肪饮食 5 天内的体重增加情况,将其分为“肥胖易感性”(OP)或“肥胖抗性”(OR)亚组,然后在进行微透析测试之前转换为低脂肪饲料。与 OR 大鼠相比,OP 大鼠的 NAc 中 DA 的基础水平明显降低。高脂肪挑战餐后,OP 和 OR 大鼠的细胞外 DA 和其代谢物均显著增加;然而,OP 大鼠的 NAc DA 仍保持在降低水平。此外,在 OR 大鼠中,全身性给予脂肪乳剂后观察到的 DA 和代谢物水平的增加在 OP 大鼠中并不明显,相反,OP 大鼠的 DA 没有变化,其代谢物减少。这些结果首先表明,脂肪可以刺激伏隔核 DA 的释放,其次表明,在外源性大鼠中,易过度进食并在美味、高脂肪饮食中肥胖的大鼠在体重正常时表现出中边缘多巴胺系统信号降低,这表明它可能与其过量的消费行为有关。