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大西洋鲑(Salmo salar L.)脑中2-[¹²⁵I]碘褪黑素结合位点的定位

Localization of 2-[125I]iodomelatonin binding sites in the brain of the Atlantic salmon, Salmo salar L.

作者信息

Ekström P, Vanĕcek J

机构信息

Department of Zoology, University of Lund, Sweden.

出版信息

Neuroendocrinology. 1992 May;55(5):529-37. doi: 10.1159/000126166.

Abstract

The photosensory pineal organ of teleost fish shows a circadian rhythm in melatonin synthesis, and melatonin is known to influence a number of physiological functions. However, the target sites for melatonin are not known. We have investigated the distribution of melatonin binding sites in the brain of the salmon, Salmo salar. Brains were collected for receptor binding assay and autoradiography at each of three time points: just after lights on, just before lights off, and in the dark at midnight (photoperiod light-dark 12:12, lights on at 08.00 h, lights off at 20.00 h). Specific binding of 2-[125I]iodomelatonin was observed in several brain areas. High densities were associated with (1) the optic tectum, (2) the preoptic area, (3) an area encompassing the magnocellular superficial pretectal nucleus ('nucleus rotundus') and the glomerular complex, (4) the inferior lobes of the hypothalamus, (5) the lateral mesencephalic tegmentum including the torus semicircularis, and (6) the molecular layer of the cerebellum. No binding was observed in the pineal organ or in the pituitary. We observed no differences in labeling between brains collected at different time points, except in the preoptic area where binding was high at 20.00 and 24.00 h, but low at 08.00 h, and in the corpus cerebelli, where labeling in the molecular layer was higher at 24.00 and 08.00 h than at 20.00 h.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

硬骨鱼的光感受松果体器官在褪黑素合成方面表现出昼夜节律,并且已知褪黑素会影响多种生理功能。然而,褪黑素的靶位点尚不清楚。我们研究了鲑鱼(Salmo salar)大脑中褪黑素结合位点的分布。在三个时间点的每个时间点采集大脑用于受体结合测定和放射自显影:开灯后、关灯前以及午夜黑暗时(光周期12:12,8:00开灯,20:00关灯)。在几个脑区观察到了2-[125I]碘褪黑素的特异性结合。高密度结合位点与以下区域相关:(1)视顶盖;(2)视前区;(3)一个包含大细胞浅层顶盖前核(“圆核”)和肾小球复合体的区域;(4)下丘脑的下叶;(5)包括半规管隆起的外侧中脑被盖;(6)小脑的分子层。在松果体器官或垂体中未观察到结合。除了视前区在20:00和24:00时结合较高而在8:00时较低,以及小脑蚓部在分子层的标记在24:00和8:00时高于20:00时外,我们未观察到在不同时间点采集的大脑之间标记有差异。(摘要截断于250字)

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