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超昼夜皮质酮分泌在没有昼夜节律线索的情况下得以维持。

Ultradian corticosterone secretion is maintained in the absence of circadian cues.

机构信息

Henry Wellcome Laboratories for Integrative Neuroscience and Endocrinology, University of Bristol, Dorothy Hodgkin Building, Whitson Street, Bristol BS1 3NY, UK.

出版信息

Eur J Neurosci. 2012 Oct;36(8):3142-50. doi: 10.1111/j.1460-9568.2012.08213.x. Epub 2012 Jul 23.

Abstract

Plasma levels of corticosterone exhibit both circadian and ultradian rhythms. The circadian component of these rhythms is regulated by the suprachiasmatic nucleus (SCN). Our studies investigate the importance of the SCN in regulating ultradian rhythmicity. Two approaches were used to dissociate the hypothalamic-pituitary-adrenal (HPA) axis from normal circadian input in rats: (i) exposure to a constant light (LL) environment and (ii) electrolytic lesioning of the SCN. Blood was sampled using an automated sampling system. As expected, both treatments resulted in a loss of the circadian pattern of corticosterone secretion. Ultradian pulsatile secretion of corticosterone however, was maintained across the 24 h in all animals. Furthermore, the loss of SCN input revealed an underlying relationship between locomotor and HPA activity. In control (LD) rats there was no clear correlation between ultradian locomotor activity and hormone secretion, whereas, in LL rats, episodes of ultradian activity were consistently followed by periods of increased pulsatile hormone secretion. These data clearly demonstrate that the ultradian rhythm of corticosterone secretion is generated through a mechanism independent of the SCN input, supporting recent evidence for a sub-hypothalamic pulse generator.

摘要

血浆皮质酮水平表现出昼夜节律和超昼夜节律。这些节律的昼夜成分受视交叉上核(SCN)调节。我们的研究调查了 SCN 在调节超昼夜节律性中的重要性。为了将下丘脑-垂体-肾上腺(HPA)轴与大鼠的正常昼夜输入分离,采用了两种方法:(i)暴露于恒定光照(LL)环境和(ii)SCN 的电解损伤。使用自动采样系统采集血液样本。正如预期的那样,这两种处理都导致了皮质酮分泌的昼夜模式丧失。然而,在所有动物中,超昼夜皮质酮脉冲分泌在 24 小时内都得到维持。此外,SCN 输入的丧失揭示了运动和 HPA 活动之间的潜在关系。在对照(LD)大鼠中,超昼夜运动活动和激素分泌之间没有明显的相关性,而在 LL 大鼠中,超昼夜活动的发作总是伴随着脉冲激素分泌增加的时期。这些数据清楚地表明,皮质酮分泌的超昼夜节律是通过一种独立于 SCN 输入的机制产生的,这支持了最近关于亚下丘脑脉冲发生器的证据。

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