Locus Ceruleus Dynamics Are Suppressed during Licking and Enhanced Postlicking Independent of Taste Novelty

eneuro Pub Date : 2024-04-01 DOI:10.1523/ENEURO.0535-23.2024
Will Fan, Christopher B. Engborg, Natale R. Sciolino
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Abstract

Attending to salient sensory attributes of food, such as tastes that are new, displeasing, or unexpected, allows the procurement of nutrients without food poisoning. Exposure to new tastes is known to increase norepinephrine (NE) release in taste processing forebrain areas, yet the central source for this release is unknown. Locus ceruleus norepinephrine neurons (LC-NE) emerge as a candidate in signaling salient information about taste, as other salient sensory stimuli (e.g., visual, auditory, somatosensation) are known to activate LC neurons. To determine if LC neurons are sensitive to features of taste novelty, we used fiber photometry to record LC-NE activity in water-restricted mice that voluntarily licked either novel or familiar substances of differential palatability (saccharine, citric acid). We observed that LC-NE activity was suppressed during lick bursts and transiently activated upon the termination of licking and that these dynamics were independent of the familiarity of the substance consumed. We next recorded LC dynamics during brief and unexpected consumption of tastants and found no increase in LC-NE activity, despite their responsiveness to visual and auditory stimuli, revealing selectivity in LC's responses to salient sensory information. Our findings suggest that LC activity during licking is not influenced by taste novelty, implicating a possible role for non-LC noradrenergic nuclei in signaling critical information about taste.
舔食过程中神经节动力受抑制,舔食后动力增强,与味觉新奇性无关
关注食物的显著感官属性,如新奇、令人不快或意想不到的味道,可以在不引起食物中毒的情况下获取营养。众所周知,接触新口味会增加味觉加工前脑区域去甲肾上腺素(NE)的释放,但这种释放的中心来源尚不清楚。由于已知其他显著的感官刺激(如视觉、听觉和躯体感觉)会激活脑皮层去甲肾上腺素神经元,因此脑皮层去甲肾上腺素神经元(LC-NE)成为传递有关味觉的显著信息的候选神经元。为了确定 LC 神经元是否对味觉新奇性特征敏感,我们使用纤维光度计记录了限水小鼠自愿舔食新奇或熟悉的不同适口性物质(糖精、柠檬酸)时 LC-NE 的活动。我们观察到,LC-NE 活性在舔食爆发期间受到抑制,并在舔食结束后被短暂激活,而且这些动态变化与所食用物质的熟悉程度无关。接下来,我们记录了短暂和意外摄入味觉物质时的 LC 动态,发现尽管 LC-NE 对视觉和听觉刺激有反应,但 LC-NE 的活动并没有增加,这揭示了 LC 对突出感官信息的选择性反应。我们的研究结果表明,舔食过程中 LC 的活动不受味觉新奇性的影响,这意味着非 LC 去甲肾上腺素能核团在传递味觉关键信息方面可能发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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