Institute of Functional Genomics and.
BioCampus Montpellier, University of Montpellier, CNRS, INSERM, F-34094 Montpellier, France.
JCI Insight. 2023 Feb 8;8(3):e165763. doi: 10.1172/jci.insight.165763.
Central integration of peripheral appetite-regulating signals ensures maintenance of energy homeostasis. Thus, plasticity of circulating molecule access to neuronal circuits involved in feeding behavior plays a key role in the adaptive response to metabolic changes. However, the mechanisms involved remain poorly understood despite their relevance for therapeutic development. Here, we investigated the role of median eminence mural cells, including smooth muscle cells and pericytes, in modulating gut hormone effects on orexigenic/anorexigenic circuits. We found that conditional activation of median eminence vascular cells impinged on local blood flow velocity and altered ghrelin-stimulated food intake by delaying ghrelin access to target neurons. Thus, activation of median eminence vascular cells modulates food intake in response to peripheral ghrelin by reducing local blood flow velocity and access to the metabolic brain.
中枢整合外周食欲调节信号以维持能量稳态。因此,循环分子进入参与摄食行为的神经元回路的可塑性能在代谢变化的适应性反应中发挥关键作用。然而,尽管它们与治疗开发有关,但相关机制仍知之甚少。在这里,我们研究了正中隆起壁细胞(包括平滑肌细胞和周细胞)在调节肠道激素对摄食/厌食性回路的作用中的作用。我们发现,正中隆起血管细胞的条件激活会影响局部血流速度,并通过延迟ghrelin 到达靶神经元来改变 ghrelin 刺激的摄食。因此,正中隆起血管细胞的激活通过降低局部血流速度和代谢脑的进入来调节外周 ghrelin 刺激的摄食。