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人类和实验动物松果体及体液中褪黑素水平的正常模式。

Normal patterns of melatonin levels in the pineal gland and body fluids of humans and experimental animals.

作者信息

Reiter R J

出版信息

J Neural Transm Suppl. 1986;21:35-54.

PMID:3018145
Abstract

The normal 24 hours patterns of melatonin were described in experimental animals and man. The rhythms are generated by neuronal activity originating in the suprachiasmatic nuclei of the hypothalamus; the activity of these nuclei are synchronized by the prevailing light:dark environment as perceived by the retinas. As a consequence of this synchronization, pineal melatonin levels are always high at night and low during the day, irrespective of whether the animal being studied is nocturnally or diurnally active. The rhythmic production of melatonin in the pineal gland is interrupted by the exposure of animals, or man, to light during the normal dark period. Several factors may change the 24 hours pattern of melatonin production. Because daylength changes throughout the year there are seasonal effects on the melatonin rhythm. Also, age is a major factor in determining the ability of the pineal gland to metabolize serotonin to melatonin. In advanced age pineal melatonin production is severely limited in both the human and in experimental animals. A variety of endocrine manipulations have been tested in terms of their impact on the ability of the pineal to produce melatonin. The majority of these have been rather innocuous although hypophysectomy does significantly curtail the synthesis of melatonin. To date, melatonin cycles have been usually described in rodents maintained under controlled environmental conditions in the laboratory; it can only be assumed that these rhythms are similar in animals in their natural habitat.

摘要

实验动物和人类体内褪黑素的正常24小时分泌模式已被描述。这些节律是由下丘脑视交叉上核产生的神经元活动引起的;这些核的活动通过视网膜所感知的当前明暗环境实现同步。由于这种同步作用,无论所研究的动物是夜行性还是昼行性,松果体褪黑素水平在夜间总是很高,而在白天则很低。在正常的黑暗期,动物或人类暴露于光线下会中断松果体中褪黑素的节律性分泌。有几个因素可能会改变褪黑素分泌的24小时模式。由于一年中白昼长度会发生变化,因此对褪黑素节律存在季节性影响。此外,年龄是决定松果体将血清素代谢为褪黑素能力的一个主要因素。在老年时,人类和实验动物的松果体褪黑素分泌都受到严重限制。人们已经测试了各种内分泌操作对松果体产生褪黑素能力的影响。尽管垂体切除确实会显著减少褪黑素的合成,但大多数这些操作的影响都相对较小。迄今为止,褪黑素周期通常是在实验室可控环境条件下饲养的啮齿动物中描述的;只能假定这些节律在自然栖息地的动物中是相似的。

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