Division of Integrative Physiology, Kansai Electric Power Medical Research Institute, Kyoto, Japan.
Department of Diabetes, Endocrinology and Metabolism and Department of Rheumatology and Clinical Immunology, Gifu University Graduate School of Medicine, Gifu, Japan.
J Diabetes Investig. 2024 Mar;15(3):282-284. doi: 10.1111/jdi.14130. Epub 2023 Dec 23.
The report by Adriaenssens et al. in JCI Insight 22 May 2023 explored the role and property of the neurons that express glucose-dependent insulinotropic polypeptide receptor (GIPR) in the brainstem and hypothalamus. The chemogenetic activation of the brainstem GIPR neurons and that of the hypothalamic GIPR neurons showed different feeding and behavior responses. The brainstem GIPR neurons projected to the paraventricular hypothalamus and lateral parabrachial nucleus. Fluorescent-labeled, stabilized peptide GIPR agonist (GIPRA), peripherally injected, localized to the area postrema, nucleus tractus solitarius, median eminence and arcuate hypothalamus. This report showed the role of brainstem GIPR neurons in receiving GIPRA to drive the neural circuit to reduce feeding and bodyweight. In this commentary, distinct and possible cooperative roles of the hypothalamic and the brainstem GIPR pathways will also be discussed.
2023 年 5 月 22 日,Adriaenssens 等人在《JCI Insight》上的报告探讨了表达葡萄糖依赖性胰岛素释放多肽受体(GIPR)的神经元在脑干和下丘脑中的作用和特性。化学遗传激活脑干 GIPR 神经元和下丘脑 GIPR 神经元显示出不同的摄食和行为反应。脑干 GIPR 神经元投射到室旁下丘脑和外侧臂旁核。外周注射荧光标记的稳定肽 GIPR 激动剂(GIPRA)定位于迷走神经后区、孤束核、正中隆起和弓状下丘脑。本报告显示了脑干 GIPR 神经元在接收 GIPRA 以驱动神经回路减少摄食和体重方面的作用。在这篇评论中,还将讨论下丘脑和脑干 GIPR 途径的不同和可能的协同作用。