Department of Neurosurgery, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.
Department of Electrical Engineering and Computer Science, University of California, Irvine, Irvine, CA, USA.
Nature. 2023 Sep;621(7978):381-388. doi: 10.1038/s41586-023-06459-w. Epub 2023 Aug 30.
Only recently have more specific circuit-probing techniques become available to inform previous reports implicating the rodent hippocampus in orexigenic appetitive processing. This function has been reported to be mediated at least in part by lateral hypothalamic inputs, including those involving orexigenic lateral hypothalamic neuropeptides, such as melanin-concentrating hormone. This circuit, however, remains elusive in humans. Here we combine tractography, intracranial electrophysiology, cortico-subcortical evoked potentials, and brain-clearing 3D histology to identify an orexigenic circuit involving the lateral hypothalamus and converging in a hippocampal subregion. We found that low-frequency power is modulated by sweet-fat food cues, and this modulation was specific to the dorsolateral hippocampus. Structural and functional analyses of this circuit in a human cohort exhibiting dysregulated eating behaviour revealed connectivity that was inversely related to body mass index. Collectively, this multimodal approach describes an orexigenic subnetwork within the human hippocampus implicated in obesity and related eating disorders.
直到最近,更具体的电路探测技术才得以应用,为先前报告中涉及的啮齿动物海马体在食欲性加工中的作用提供了信息。据报道,这种功能至少部分是由外侧下丘脑的传入介导的,包括涉及食欲性外侧下丘脑神经肽,如黑色素浓缩激素。然而,这个回路在人类中仍然难以捉摸。在这里,我们结合示踪、颅内电生理学、皮质下诱发电位和脑清除 3D 组织学,以确定涉及外侧下丘脑并汇聚于海马亚区的食欲性回路。我们发现低频功率受甜-脂肪食物线索的调节,这种调节特异性地存在于背外侧海马体中。对一个表现出饮食失调行为的人类队列进行该回路的结构和功能分析表明,其连接性与体重指数呈负相关。总的来说,这种多模态方法描述了人类海马体中与肥胖和相关饮食失调有关的食欲性子网。