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大鼠脑显微切割区域中核雄激素受体的定量分布

Quantitative distribution of nuclear androgen receptors in microdissected areas of the rat brain.

作者信息

Roselli C E, Handa R J, Resko J A

机构信息

Department of Physiology, Oregon Health Sciences University, Portland.

出版信息

Neuroendocrinology. 1989 May;49(5):449-53. doi: 10.1159/000125151.

DOI:10.1159/000125151
PMID:2725839
Abstract

The binding of androgens to specific high-affinity receptor sites in brain tissue is postulated as an initial event in the mechanism of central androgenic action. In an effort to assess the functional capacity of the androgen receptor system in the central nervous system, we measured the concentration of nuclear (ARn) as well as cytosolic androgen receptors (ARc) in 13 microdissected brain samples from intact male and female Sprague-Dawley rats. Tissues from 6 rats were combined for each determination and androgen receptor contents were measured with single-point in vitro assays that used saturating concentrations of high specific activity 3[H]dihydrotestosterone. We found that ARc levels tended to be higher in females than males although the general patterns of distribution were very similar. As expected, ARn concentrations were significantly higher in males than females. The highest concentrations of ARn (greater than 100 fmol/mg DNA) in males were measured in the ventromedial nucleus of the hypothalamus and medial amygdala; intermediate levels (50-100 fmol/mg DNA) were found in arcuate nucleus-median eminence, medial preoptic nucleus, periventricular preoptic area, bed nucleus of the stria terminalis, anterior hypothalamus, periventricular anterior hypothalamus, lateral septum, and parietal cortex, and low levels (less than 50 fmol/mg DNA) were measured in lateral preoptic nucleus and cortical amygdala. With the exception of the periventricular preoptic area (74 +/- 33 fmol/mg DNA), only very low concentrations of ARn were measured in females. These data provide the first quantitative profile of ARn in discrete brain nuclei and subregions of the rat.

摘要

雄激素与脑组织中特定的高亲和力受体位点结合被认为是中枢雄激素作用机制的初始事件。为了评估中枢神经系统中雄激素受体系统的功能能力,我们测量了来自完整雄性和雌性Sprague-Dawley大鼠的13个显微解剖脑样本中的核雄激素受体(ARn)以及胞质雄激素受体(ARc)的浓度。每次测定将6只大鼠的组织合并在一起,并用单点体外测定法测量雄激素受体含量,该方法使用饱和浓度的高比活性3[H]二氢睾酮。我们发现,尽管分布的总体模式非常相似,但雌性的ARc水平往往高于雄性。正如预期的那样,雄性的ARn浓度明显高于雌性。在雄性中,ARn浓度最高(大于100 fmol/mg DNA)的区域在下丘脑腹内侧核和杏仁核内侧;中等水平(50 - 100 fmol/mg DNA)见于弓状核 - 正中隆起、视前内侧核、室周视前区、终纹床核、下丘脑前部、室周下丘脑前部、外侧隔和顶叶皮质,而在视前外侧核和杏仁皮质中测量到的水平较低(小于50 fmol/mg DNA)。除室周视前区(74±33 fmol/mg DNA)外,在雌性中仅测量到非常低浓度的ARn。这些数据提供了大鼠离散脑核和亚区域中ARn的首个定量分布图。

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