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An excitatory ventral hippocampus to lateral septum circuit that suppresses feeding

机译:兴奋性腹侧海马至侧中隔回路抑制进食

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摘要

Previous research has focused on feeding circuits residing in the hindbrain and midbrain that govern homeostatic or hedonic control of food intake. However, the feeding circuits controlling emotional or cognitive aspects of food intake are largely unknown. Here we use chemical genetics and optogenetic techniques to dissect appetite control circuits originating from ventral hippocampus (vHPC), a brain region implicated in emotion and cognition. We find that the vHPC projects functional glutamatergic synaptic inputs to the lateral septum (LS) and optogenetic activation of vHPC projections in LS reduces food intake. Consistently, food intake is suppressed by chemogenetic activation of glutamatergic neurons in the vHPC that project to the LS and inactivation of LS neurons blunts vHPC-induced suppression of feeding. Collectively, our results identify an anorexigenic neural circuit originating from vHPC to LS in the brain, revealing a potential therapeutic target for the treatment of anorexia or other appetite disorders.
机译:以前的研究集中在支配后脑和中脑的进食回路,这些回路控制食物摄入的稳态或享乐控制。然而,控制食物摄入的情感或认知方面的喂养回路在很大程度上是未知的。在这里,我们使用化学遗传学和光遗传学技术剖析源自腹侧海马(vHPC)的食欲控制电路,vHPC是牵涉情绪和认知的大脑区域。我们发现vHPC将功能性谷氨酸能突触输入投射到侧隔(LS),并且LS中vHPC投射的光遗传激活会减少食物摄入。一致地,食物摄取被投射到LS的vHPC中的谷氨酸能神经元的化学生成激活所抑制,而LS神经元的失活钝化了vHPC诱导的进食抑制。总的来说,我们的结果确定了从vHPC到大脑中LS的厌食神经回路,揭示了治疗厌食症或其他食欲障碍的潜在治疗靶标。

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