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饥饿驱动的行为自适应优先级化。

Hunger-driven adaptive prioritization of behavior.

机构信息

Neuroscience Graduate Program, Vanderbilt University, Nashville, TN, USA.

Vanderbilt Brain Institute, Vanderbilt University, Nashville, TN, USA.

出版信息

FEBS J. 2022 Feb;289(4):922-936. doi: 10.1111/febs.15791. Epub 2021 Mar 10.

Abstract

In order to survive, an animal must adapt its behavioral priorities to accommodate changing internal and external conditions. Hunger, a universally recognized interoceptive signal, promotes food intake though increasingly well-understood neural circuits. Less understood, is how hunger is integrated into the neural computations that guide nonfeeding behaviors. Within the brain, agouti-related peptide neurons in the arcuate nucleus of the hypothalamus have been found to powerfully stimulate feeding in addition to mediating other hunger-driven behavioral phenotypes. In this review, we compile the behavioral plasticity downstream of hunger and present identified or potential molecular and neural circuit mechanisms. We catalogue hunger's ability to increase exploration, decrease anxiety, and alter social behavior, among other phenotypes. Finally, we suggest paths forward for understanding hunger-driven behavioral adaptation and discuss the benefits of understanding state-dependent modulation of neural circuits controlling behavior.

摘要

为了生存,动物必须调整其行为优先级以适应不断变化的内部和外部条件。饥饿是一种普遍公认的内脏信号,通过越来越被理解的神经回路促进食物摄入。不太被理解的是,饥饿如何被整合到指导非摄食行为的神经计算中。在大脑中,已发现下丘脑弓状核中的 AgRP 神经元除了介导其他饥饿驱动的行为表型外,还能有力地刺激摄食。在这篇综述中,我们汇总了饥饿的下游行为可塑性,并提出了已确定或潜在的分子和神经回路机制。我们列出了饥饿增加探索、减少焦虑和改变社会行为等表型的能力。最后,我们为理解饥饿驱动的行为适应提出了前进的道路,并讨论了理解控制行为的神经回路的状态依赖性调制的好处。

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