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结节乳头体核中的多种神经递质:大鼠、小鼠和豚鼠的比较

Multiple neurotransmitters in the tuberomammillary nucleus: comparison of rat, mouse, and guinea pig.

作者信息

Airaksinen M S, Alanen S, Szabat E, Visser T J, Panula P

机构信息

Department of Anatomy, University of Helsinki, Finland.

出版信息

J Comp Neurol. 1992 Sep 1;323(1):103-16. doi: 10.1002/cne.903230109.

Abstract

Tuberomammillary neurons in the posterior hypothalamus are the sole source of neuronal histamine in adult mammalian brain. In the rat, these cells are reported to contain immunoreactivity for gamma-aminobutyric acid (GABA) and several neuropeptides. We compared the presence of these substances in the tuberomammillary cells of the rat, mouse, and guinea pig. In all three species, all histamine-immunoreactive neuronal cell bodies were positive for GABA. This suggests that GABAergic transmission may be important in tuberomammillary function. No cell bodies immunoreactive for thyrotropin releasing hormone (TRH) were found in the guinea pig or mouse tuberomammillary area. In contrast, about 14% of the histamine-immunoreactive tuberomammillary cells in the rat were TRH-positive. These cells were small or medium-sized and were located only in the medial part of the tuberomammillary complex. An antibody against porcine galanin stained about 45% of the tuberomammillary cell bodies in the rat and about 28% in the mouse, but none in the guinea pig. A large proportion of the cells in the rat and mouse, but none in the guinea pig, were positive for met-enkephalin-arg-phe. In contrast, all histamine-containing tuberomammillary cells in the guinea pig, but none in the rat or mouse, were immunoreactive for met-enkephalin. This may indicate a different expression of proenkephalin-derived peptides in the tuberomammillary neurons in these species. Some substance P-immunoreactive cell bodies were located in the tuberomammillary area in all three species. However, only 3% of the histamine-immunoreactive cell bodies in the rat and mouse but none in the guinea pig were substance P-positive. The neurochemical properties of the tuberomammillary nucleus that exhibited species commonality deserve to be studied neurochemically and electrophysiologically in order to determine the functional relevance of coexisting transmitters in this nucleus.

摘要

下丘脑后部的结节乳头体神经元是成年哺乳动物大脑中神经元组胺的唯一来源。据报道,在大鼠中,这些细胞含有γ-氨基丁酸(GABA)和几种神经肽的免疫反应性。我们比较了大鼠、小鼠和豚鼠结节乳头体细胞中这些物质的存在情况。在所有这三个物种中,所有组胺免疫反应性神经元细胞体对GABA均呈阳性。这表明GABA能传递可能在结节乳头体功能中起重要作用。在豚鼠或小鼠的结节乳头体区域未发现促甲状腺激素释放激素(TRH)免疫反应性细胞体。相比之下,大鼠中约14%的组胺免疫反应性结节乳头体细胞为TRH阳性。这些细胞为中小型,仅位于结节乳头体复合体的内侧部分。抗猪甘丙肽抗体染色显示,大鼠中约45%的结节乳头体细胞体和小鼠中约28%的结节乳头体细胞体呈阳性,但豚鼠中无阳性细胞。大鼠和小鼠中很大一部分细胞对甲硫氨酸脑啡肽-精氨酸-苯丙氨酸呈阳性,而豚鼠中无阳性细胞。相比之下,豚鼠中所有含组胺的结节乳头体细胞对甲硫氨酸脑啡肽呈免疫反应性,而大鼠或小鼠中无阳性细胞。这可能表明这些物种的结节乳头体神经元中脑啡肽原衍生肽的表达不同。在所有这三个物种中,一些P物质免疫反应性细胞体位于结节乳头体区域。然而,大鼠和小鼠中仅3%的组胺免疫反应性细胞体为P物质阳性,豚鼠中无阳性细胞。对表现出物种共性的结节乳头体核的神经化学特性进行神经化学和电生理学研究,以确定该核中共存递质的功能相关性是很有必要的。

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