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Identification of a Stress-Sensitive Anorexigenic Neurocircuit From Medial Prefrontal Cortex to Lateral Hypothalamus

机译:识别从内侧前额叶皮层到下丘脑外侧的应激敏感性厌氧神经回路

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? 2022 Society of Biological PsychiatryBackground: A greater understanding of how the brain controls appetite is fundamental to developing new approaches for treating diseases characterized by dysfunctional feeding behavior, such as obesity and anorexia nervosa. Methods: By modeling neural network dynamics related to homeostatic state and body mass index, we identified a novel pathway projecting from the medial prefrontal cortex (mPFC) to the lateral hypothalamus (LH) in humans (n = 53). We then assessed the physiological role and dissected the function of this mPFC-LH circuit in mice. Results: In vivo recordings of population calcium activity revealed that this glutamatergic mPFC-LH pathway is activated in response to acute stressors and inhibited during food consumption, suggesting a role in stress-related control over food intake. Consistent with this role, inhibition of this circuit increased feeding and sucrose seeking during mild stressors, but not under nonstressful conditions. Finally, chemogenetic or optogenetic activation of the mPFC-LH pathway is sufficient to suppress food intake and sucrose seeking in mice. Conclusions: These studies identify a glutamatergic mPFC-LH circuit as a novel stress-sensitive anorexigenic neural pathway involved in the cortical control of food intake.
机译:?2022 年生物精神病学学会背景:更好地了解大脑如何控制食欲对于开发治疗以进食行为失调为特征的疾病(如肥胖和神经性厌食症)的新方法至关重要。方法:通过模拟与稳态和体重指数相关的神经网络动力学,我们确定了人类从内侧前额叶皮层 (mPFC) 投射到外侧下丘脑 (LH) 的新途径 (n = 53)。然后,我们评估了小鼠的生理作用并剖析了该mPFC-LH回路的功能。结果:群体钙活性的体内记录显示,这种谷氨酸能 mPFC-LH 通路在急性应激源下被激活,并在食物摄入过程中受到抑制,表明在压力相关控制食物摄入中发挥作用。与这一作用一致,在轻度应激源期间,抑制该回路会增加摄食和蔗糖寻求,但在非应激条件下则不然。最后,mPFC-LH通路的化学遗传学或光遗传学激活足以抑制小鼠的食物摄入和蔗糖寻求。结论:这些研究将谷氨酸能 mPFC-LH 回路确定为一种新的应激敏感性厌食神经通路,参与食物摄入的皮质控制。

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