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Accumbal Cholinergic Interneurons Differentially Influence Motivation Related to Satiety Signaling

机译:累积胆碱能中枢神经元差异影响与饱足信号相关的动机。

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摘要

Satiety, rather than all or none, can instead be viewed as a cumulative decrease in the drive to eat that develops over the course of a meal. The nucleus accumbens (NAc) is known to play a critical role in this type of value reappraisal, but the underlying circuits that influence such processes are unclear. Although NAc cholinergic interneurons (CINs) comprise only a small proportion of NAc neurons, their local impact on reward-based processes provides a candidate cell population for investigating the neural underpinnings of satiety. The present research therefore aimed to determine the role of NAc-CINs in motivation for food reinforcers in relation to satiety signaling. Through bidirectional control of CIN activity in mice, we show that when motivated by food restriction, increasing CIN activity led to a reduction in palatable food consumption while reducing CIN excitability enhanced food intake. These activity-dependent changes developed only late in the session and were unlikely to be driven by the innate reinforcer strength, suggesting that CIN modulation was instead impacting the cumulative change in motivation underlying satiety signaling. We propose that on a circuit level, an overall increase in inhibitory tone onto NAc output neurons played a role in the behavioral results, as activating NAc-CINs led to an inhibition of medium spiny neurons that was dependent on nicotinic receptor activation. Our results reveal an important role for NAc-CINs in controlling motivation for food intake and additionally provide a circuit-level framework for investigating the endogenous cholinergic circuits that signal satiety.
机译:饱腹感,而不是全部饱腹感,或没有饱腹感,可以看作是进餐过程中进食动机的累积下降。伏伏核(NAc)在这种类型的价值评估中起着关键作用,但影响这种过程的潜在电路尚不清楚。尽管NAc胆碱能中间神经(CIN)仅占NAc神经元的一小部分,但它们对基于奖励的过程的局部影响为研究饱腹感的神经基础提供了候选细胞群。因此,本研究旨在确定NAc-CIN在与饱腹感信号相关的食品强化剂动机中的作用。通过双向控制小鼠CIN活性,我们发现当受到食物限制的刺激时,增加的CIN活性会导致可口食物的摄入量减少,同时降低CIN兴奋性会增加食物摄入量。这些与活动有关的变化仅在训练后期才发展,不太可能由先天的增强力量驱动,表明CIN调节反而影响饱腹信号背后动机的累积变化。我们提出,在电路水平上,对NAc输出神经元的抑制音的总体增加在行为结果中起作用,因为激活NAc-CINs会抑制依赖于烟碱样受体激活的中等多刺神经元。我们的研究结果揭示了NAc-CIN在控制食物摄取动机中的重要作用,并且还提供了一个电路级框架来研究发信号的饱腹感的内源胆碱能回路。

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