ETH Zürich, Department of Health Sciences and Technology, Schorenstrasse, Schwerzenbach 8603, Switzerland.
University of Leicester, Department of Neuroscience, Psychology & Behaviour, University Road, Leicester LE1 9HN, UK.
Curr Biol. 2022 Apr 25;32(8):1812-1821.e4. doi: 10.1016/j.cub.2022.02.067. Epub 2022 Mar 21.
Ingested nutrients are proposed to control mammalian behavior by modulating the activity of hypothalamic orexin/hypocretin neurons (HONs). Previous in vitro studies showed that nutrients ubiquitous in mammalian diets, such as non-essential amino acids (AAs) and glucose, modulate HONs in distinct ways. Glucose inhibits HONs, whereas non-essential (but not essential) AAs activate HONs. The latter effect is of particular interest because its purpose is unknown. Here, we show that ingestion of a dietary-relevant mix of non-essential AAs activates HONs and shifts behavior from eating to exploration. These effects persisted despite ablation of a key neural gut → brain communication pathway, the cholecystokinin-sensitive vagal afferents. The behavioral shift induced by the ingested non-essential AAs was recapitulated by targeted HON optostimulation and abolished in mice lacking HONs. Furthermore, lick microstructure analysis indicated that intragastric non-essential AAs and HON optostimulation each reduce the size, but not the frequency, of consumption bouts, thus implicating food palatability modulation as a mechanism for the eating suppression. Collectively, these results suggest that a key purpose of HON activation by ingested, non-essential AAs is to suppress eating and re-initiate food seeking. We propose and discuss possible evolutionary advantages of this, such as optimizing the limited stomach capacity for ingestion of essential nutrients.
摄入的营养物质被认为通过调节下丘脑食欲素/下丘脑分泌素神经元(HON)的活性来控制哺乳动物的行为。先前的体外研究表明,哺乳动物饮食中普遍存在的营养物质,如非必需氨基酸(AA)和葡萄糖,以不同的方式调节 HON。葡萄糖抑制 HON,而非必需(而非必需)AA 则激活 HON。后者的作用尤其有趣,因为其目的尚不清楚。在这里,我们表明,摄入与饮食相关的非必需 AA 混合物会激活 HON,并将行为从进食转变为探索。这些影响在消除关键的神经-肠道→大脑通讯途径——胆囊收缩素敏感的迷走传入神经后仍然存在。摄入的非必需 AA 引起的行为转变可以通过靶向 HON 光刺激来重现,并且在缺乏 HON 的小鼠中被消除。此外,舔微观结构分析表明,胃内非必需 AA 和 HON 光刺激均减少了消费回合的大小,但不影响消费回合的频率,因此暗示了食物适口性调节作为抑制进食的一种机制。总的来说,这些结果表明,摄入的非必需 AA 激活 HON 的一个关键目的是抑制进食并重新开始寻找食物。我们提出并讨论了这种情况的可能进化优势,例如优化有限的胃容量以摄入必需营养素。
J Neuroendocrinol. 2023-9
Peptides. 2021-11
Prog Neurobiol. 2020-4
Nat Neurosci. 2024-7
Nat Neurosci. 2024-9
Neuron. 2011-11-17
Curr Top Behav Neurosci. 2017
Open Biol. 2025-8
Nat Neurosci. 2024-9
Cell Mol Biol Lett. 2024-6-14
Nat Neurosci. 2024-7