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Decoding Neural Circuits that Control Compulsive Sucrose Seeking

机译:解码控制强迫性蔗糖寻找的神经电路

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摘要

The lateral hypothalamic (LH) projection to the ventral tegmental area (VTA) has been linked to reward processing, but the computations within the LH-VTA loop that give rise to specific aspects of behavior have been difficult to isolate. We show that LH-VTA neurons encode the learned action of seeking a reward, independent of reward availability. In contrast, LH neurons downstream of VTA encode reward-predictive cues and unexpected reward omission. We show that inhibiting the LH-VTA pathway reduces "compulsive'' sucrose seeking but not food consumption in hungry mice. We reveal that the LH sends excitatory and inhibitory input onto VTA dopamine (DA) and GABA neurons, and that the GABAergic projection drives feeding-related behavior. Our study overlays information about the type, function, and connectivity of LH neurons and identifies a neural circuit that selectively controls compulsive sugar consumption, without preventing feeding necessary for survival, providing a potential target for therapeutic interventions for compulsive-overeating disorder.
机译:下丘脑(LH)向腹侧被盖区域(VTA)的投影已与奖励处理相关联,但是在LH-VTA循环中引起行为特定方面的计算却很难分离。我们显示LH-VTA神经元编码寻求奖励的学习行为,而与奖励可用性无关。相反,VTA下游的LH神经元编码奖励预测线索和意外的奖励遗漏。我们显示出抑制LH-VTA途径可减少饥饿小鼠的“强制性”蔗糖搜寻,但不会减少食物消耗;我们发现LH向VTA多巴胺(DA)和GABA神经元发送了兴奋性和抑制性输入,并且GABA能投射驱动与进食有关的行为。我们的研究覆盖了有关LH神经元的类型,功能和连通性的信息,并确定了一种神经回路,该回路选择性地控制强迫性糖消耗,而不会阻止生存所需的进食,为强迫性暴饮暴食的治疗干预提供了潜在目标紊乱。

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