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AgRP神经元活动促进感觉信号与营养信号之间的关联,以引导口味偏好。

AgRP neuron activity promotes associations between sensory and nutritive signals to guide flavor preference.

作者信息

Nyema Nathaniel T, McKnight Aaron D, Vargas-Elvira Alexandra G, Schneps Heather M, Gold Elizabeth G, Myers Kevin P, Alhadeff Amber L

机构信息

Monell Chemical Senses Center, Philadelphia PA 19104, USA.

University of Pennsylvania, Philadelphia PA 19104, USA.

出版信息

bioRxiv. 2023 Sep 22:2023.09.19.558483. doi: 10.1101/2023.09.19.558483.

Abstract

OBJECTIVE

The learned associations between sensory cues (e.g., taste, smell) and nutritive value (e.g., calories, post-ingestive signaling) of foods powerfully influences our eating behavior [1], but the neural circuits that mediate these associations are not well understood. Here, we examined the role of agouti-related protein (AgRP)-expressing neurons - neurons which are critical drivers of feeding behavior [2; 3] - in mediating flavor-nutrient learning (FNL).

METHODS

Because mice prefer flavors associated with AgRP neuron activity suppression [4], we examined how optogenetic stimulation of AgRP neurons during intake influences FNL, and used fiber photometry to determine how endogenous AgRP neuron activity tracks associations between flavors and nutrients.

RESULTS

We unexpectedly found that tonic activity in AgRP neurons during FNL potentiated, rather than prevented, the development of flavor preferences. There were notable sex differences in the mechanisms for this potentiation. Specifically, in male mice, AgRP neuron activity increased flavor consumption during FNL training, thereby strengthening the association between flavors and nutrients. In female mice, AgRP neuron activity enhanced flavor-nutrient preferences independently of consumption during training, suggesting that AgRP neuron activity enhances the reward value of the nutrient-paired flavor. Finally, neural activity analyses demonstrated that acute AgRP neuron dynamics track the association between flavors and nutrients in both sexes.

CONCLUSIONS

Overall, these data (1) demonstrate that AgRP neuron activity enhances associations between flavors and nutrients in a sex-dependent manner and (2) reveal that AgRP neurons track and update these associations on fast timescales. Taken together, our findings provide new insight into the role of AgRP neurons in assimilating sensory and nutritive signals for food reinforcement.

摘要

目的

食物的感官线索(如味道、气味)与营养价值(如卡路里、摄入后信号)之间习得的关联有力地影响着我们的饮食行为[1],但介导这些关联的神经回路尚不清楚。在此,我们研究了表达刺鼠相关蛋白(AgRP)的神经元——这些神经元是进食行为的关键驱动因素[2; 3]——在介导风味-营养学习(FNL)中的作用。

方法

由于小鼠更喜欢与AgRP神经元活动抑制相关的味道[4],我们研究了在摄入期间对AgRP神经元进行光遗传学刺激如何影响FNL,并使用光纤光度法来确定内源性AgRP神经元活动如何追踪味道与营养之间的关联。

结果

我们意外地发现,在FNL期间AgRP神经元的紧张性活动增强而非阻止了味道偏好的形成。这种增强作用的机制存在显著的性别差异。具体而言,在雄性小鼠中,AgRP神经元活动在FNL训练期间增加了味道的摄入量,从而加强了味道与营养之间的关联。在雌性小鼠中,AgRP神经元活动在训练期间独立于摄入量增强了风味-营养偏好,这表明AgRP神经元活动增强了与营养配对的味道的奖励价值。最后,神经活动分析表明,急性AgRP神经元动态变化在两性中均追踪味道与营养之间的关联。

结论

总体而言,这些数据(1)表明AgRP神经元活动以性别依赖的方式增强味道与营养之间的关联,(2)揭示AgRP神经元在快速时间尺度上追踪并更新这些关联。综上所述,我们的研究结果为AgRP神经元在整合食物强化的感官和营养信号中的作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94b5/10541598/8da753d08c84/nihpp-2023.09.19.558483v1-f0001.jpg

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