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弓状核、正中隆起和垂体结节部。

Arcuate nucleus, median eminence, and hypophysial pars tuberalis.

机构信息

Center for Anatomy and Brain Research, Institute for Anatomy, Düsseldorf, Germany.

Department of Neuroscience, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.

出版信息

Handb Clin Neurol. 2021;180:227-251. doi: 10.1016/B978-0-12-820107-7.00015-X.

Abstract

The arcuate nucleus (ARC) is located in the mediobasal hypothalamus and forms a morphological and functional entity with the median eminence (ME), the ARC-ME. The ARC comprises several distinct types of neurons controlling prolactin release, food intake, and metabolism as well as reproduction and onset of puberty. The ME lacks a blood-brain barrier and provides an entry for peripheral signals (nutrients, leptin, ghrelin). ARC neurons are adjacent to the wall of the third ventricle. This facilitates the exchange of signals from and to the cerebrospinal fluid. The ventricular wall is composed of tanycytes that serve different functions. Axons of ARC neurons contribute to the tuberoinfundibular tract terminating in the ME on the hypophysial portal vessels (HPV) and establish one of the neurohumoral links between the hypothalamus and the pituitary. ARC neurons are reciprocally connected with several other hypothalamic nuclei, the brainstem, and reward pathways. The hypophysial pars tuberalis (PT) is attached to the ME and the HPV. The PT, an important interface of the neuroendocrine system, is mandatory for the control of seasonal functions. This contribution provides an update of our knowledge about the ARC-ME complex and the PT which, inter alia, is needed to understand the pathophysiology of metabolic diseases and reproduction.

摘要

弓状核(ARC)位于下丘脑的中基底,与中间隆起(ME)一起形成形态和功能实体,ARC-ME。ARC 由几种不同类型的神经元组成,控制催乳素释放、摄食和代谢以及生殖和青春期开始。ME 缺乏血脑屏障,为外周信号(营养物质、瘦素、胃饥饿素)提供了进入的通道。ARC 神经元紧邻第三脑室壁。这有利于从脑脊液中交换信号。脑室壁由具有不同功能的室管膜细胞组成。ARC 神经元的轴突参与终止于 ME 的结节漏斗束(HPV),并在下丘脑和垂体之间建立了神经激素联系之一。ARC 神经元与其他几个下丘脑核、脑干和奖励途径相互连接。垂体柄附于 ME 和 HPV。PT 是神经内分泌系统的重要界面,对于控制季节性功能是必需的。这篇综述提供了对 ARC-ME 复合体和 PT 的最新认识,这对于理解代谢疾病和生殖的病理生理学是必要的。

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