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海马体和杏仁核刺激对猫下丘脑3H-氢化可的松摄取和结合的影响。

Effects of hippocampal and amygdalar stimulation on uptake and binding of 3H-hydrocortisone in the hypothalamus of the cat.

作者信息

Stith R D, Person R J, Dana R C

出版信息

J Neurosci Res. 1976;2(4):317-22. doi: 10.1002/jnr.490020409.

Abstract

Stimulation of the hippocampus or amygdala of adrenalectomized cats occurred for 10 sec followed by a 50 sec period of no stimulation, beginning 30 min prior to and ending 30 min after administration of 100 muCi of 3H-hydrocortisone into a lateral ventricle. Sixty min after administration of labeled hormone, the hypothalamus was excised and homogenized. Cytosol and nuclear extract fractions were obtained and analyzed for radioactivity and protein content. Separation of bound from free hydrocortisone was achieved by charcoal and adsorption assay. Results reveal that stimulation of the hippocampus resulted in a greater concentration of 3H-hydrocortisone taken up into hypothalamic cells. Also, a greater percentage of total hormone found in the nuclear extract was assayed as bound 3H-hydrocortisone, and the concentration of bound radioactivity in the nuclear extract was increased over control values. Amygdalar stimulation, in general, yielded results similar to those obtained from control cats. However, although a lesser percentage of total hormone in the hypothalamic cytosol was assayed as bound hormone, there was a greater concentration of nuclear bound hormone than in controls, but less than that determined in the hippocampal stimulation group. These results add to the evidence that hippocampus and amygdala have a modulating influence upon the hypothalamo-hypophyseal axis. They also suggest that one manner in which these limbic structures may influence hypothalamic function is to modulate the uptake and binding of hydrocortisone in hypothalamic cells.

摘要

对肾上腺切除的猫的海马体或杏仁核进行刺激,持续10秒,随后是50秒的无刺激期,刺激从向侧脑室注射100微居里的3H-氢化可的松前30分钟开始,到注射后30分钟结束。注射标记激素60分钟后,切除下丘脑并匀浆。获得细胞溶质和核提取物部分,并分析其放射性和蛋白质含量。通过活性炭和吸附分析法实现游离氢化可的松与结合氢化可的松的分离。结果显示,刺激海马体导致下丘脑细胞摄取的3H-氢化可的松浓度更高。此外,在核提取物中发现的总激素中,有更大比例的被测定为结合的3H-氢化可的松,并且核提取物中结合放射性的浓度高于对照值。一般来说,杏仁核刺激产生的结果与对照猫相似。然而,尽管下丘脑细胞溶质中总激素被测定为结合激素的比例较小,但核结合激素的浓度高于对照,但低于海马体刺激组所测定的浓度。这些结果进一步证明海马体和杏仁核对下丘脑-垂体轴有调节作用。它们还表明,这些边缘结构影响下丘脑功能的一种方式可能是调节下丘脑细胞中氢化可的松的摄取和结合。

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