de Araujo Ivan E, Oliveira-Maia Albino J, Sotnikova Tatyana D, Gainetdinov Raul R, Caron Marc G, Nicolelis Miguel A L, Simon Sidney A
Department of Neurobiology, Duke University Medical Center, Durham, NC 27710, USA.
Neuron. 2008 Mar 27;57(6):930-41. doi: 10.1016/j.neuron.2008.01.032.
Food palatability and hedonic value play central roles in nutrient intake. However, postingestive effects can influence food preferences independently of palatability, although the neurobiological bases of such mechanisms remain poorly understood. Of central interest is whether the same brain reward circuitry that is responsive to palatable rewards also encodes metabolic value independently of taste signaling. Here we show that trpm5-/- mice, which lack the cellular machinery required for sweet taste transduction, can develop a robust preference for sucrose solutions based solely on caloric content. Sucrose intake induced dopamine release in the ventral striatum of these sweet-blind mice, a pattern usually associated with receipt of palatable rewards. Furthermore, single neurons in this same ventral striatal region showed increased sensitivity to caloric intake even in the absence of gustatory inputs. Our findings suggest that calorie-rich nutrients can directly influence brain reward circuits that control food intake independently of palatability or functional taste transduction.
食物的适口性和享乐价值在营养摄入中起着核心作用。然而,尽管这种机制的神经生物学基础仍知之甚少,但摄食后效应可以独立于适口性影响食物偏好。一个核心问题是,对美味奖励有反应的同一大脑奖赏回路是否也能独立于味觉信号编码代谢价值。在这里,我们表明,缺乏甜味转导所需细胞机制的瞬时受体电位阳离子通道亚家族M成员5基因敲除(trpm5-/-)小鼠,能够仅基于热量含量对蔗糖溶液产生强烈偏好。蔗糖摄入诱导这些甜味盲小鼠腹侧纹状体中的多巴胺释放,这一模式通常与接受美味奖励相关。此外,即使在没有味觉输入的情况下,同一腹侧纹状体区域的单个神经元对热量摄入的敏感性也会增加。我们的研究结果表明,富含卡路里的营养物质可以直接影响控制食物摄入的大脑奖赏回路,而不受适口性或功能性味觉转导的影响。