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首页> 外文期刊>Nature Communications >An excitatory ventromedial hypothalamus to paraventricular thalamus circuit that suppresses food intake
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An excitatory ventromedial hypothalamus to paraventricular thalamus circuit that suppresses food intake

机译:一种兴奋性腹部下丘脑,抑制食物摄入量的椎间盘丘脑电路

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It is well recognized that ventromedial hypothalamus (VMH) serves as a satiety center in the brain. However, the feeding circuit for the VMH regulation of food intake remains to be defined. Here, we combine fiber photometry, chemo/optogenetics, virus-assisted retrograde tracing, ChR2-assisted circuit mapping and behavioral assays to show that selective activation of VMH neurons expressing steroidogenic factor 1 (SF1) rapidly inhibits food intake, VMH SF1 neurons project dense fibers to the paraventricular thalamus (PVT), selective chemo/optogenetic stimulation of the PVT-projecting SF1 neurons or their projections to the PVT inhibits food intake, and chemical genetic inactivation of PVT neurons diminishes SF1 neural inhibition of feeding. We also find that activation of SF1 neurons or their projections to the PVT elicits a flavor aversive effect, and selective optogenetic stimulation of ChR2-expressing SF1 projections to the PVT elicits direct excitatory postsynaptic currents. Together, our data reveal a neural circuit from VMH to PVT that inhibits food intake.
机译:很好地认识到腹侧下丘脑(VMH)用作大脑中的饱腹感。然而,用于VMH的食物摄入量的馈电电路仍有待定义。在此,我们将光纤测光,化学/邻接性,病毒辅助逆行跟踪,CHR2辅助电路映射和行为测定组合,表明表达类固化因子1(SF1)的VMH神经元的选择性激活快速抑制食物摄入量,VMH SF1神经元项目密集纤维到椎间盘丘脑(PVT),PVT突出的SF1神经元的选择性化学/致敏刺激或它们对PVT的突起抑制食物摄入,并且PVT神经元的化学遗传失活减少了SF1的喂养神经抑制。我们还发现SF1神经元的激活或它们的突起对PVT引发了风味厌恶效应,以及选择性致敏刺激CHR2表达的SF1突起,以引发直接兴奋性突触突触突出电流。我们的数据在一起揭示了VMH到PVT的神经电路,抑制食物摄入量。

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