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西伯利亚仓鼠下丘脑室旁核去甲肾上腺素释放与循环催乳素水平之间的关系:光周期和松果体的作用。

Relationship between norepinephrine release in the hypothalamic paraventricular nucleus and circulating prolactin levels in the Siberian hamster: role of photoperiod and the pineal gland.

作者信息

Imundo J, Bielefeld E, Dodge J, Badura L L

机构信息

Psychology Department/Behavioral Neuroscience Division, University at Buffalo, NY 14260, USA.

出版信息

J Biol Rhythms. 2001 Apr;16(2):173-82. doi: 10.1177/074873001129001755.

Abstract

The impact of norepinephrine (NE) and its metabolite, 3-methoxy4-hydroxyphenylglycol (MHPG), on circulating prolactin (PRL) was evaluated in the paraventricular region of the hypothalamus as a function of photoperiod and integrity of the pineal gland. In Experiment 1, whole tissue content of NE and MHPG was assessed in male and female hamsters that had been pinealectomized or sham-pinealectomized and exposed to long or short photoperiods for 5 weeks. The results revealed a marginal effect of photoperiod in males, but no overall effects of surgery. Because analysis of whole tissue content can be complicated by concurrent changes in synthesis and storage rates, Experiment 2 was conducted using microdialysis to assess extracellular levels of NE and MHPG in female hamsters. Pinealectomy completely prevented the short-day-induced suppression of luteinizing hormone, but it only partially prevented the effects of short days on PRL. Furthermore, both NE and MHPG levels were significantly elevated in short-day-exposed pinealectomized and sham-operated animals. These results suggest that NE release within the paraventricular nucleus inhibits the circulating PRL levels and is one mechanism by which direct photic information can influence the neuroendocrine axis independently of the pineal melatonin signal.

摘要

研究了去甲肾上腺素(NE)及其代谢产物3-甲氧基-4-羟基苯乙二醇(MHPG)对下丘脑室旁区域循环催乳素(PRL)的影响,并将其作为光周期和松果体完整性的函数进行评估。在实验1中,对雄性和雌性仓鼠进行松果体切除或假松果体切除,并使其暴露于长或短光周期下5周,然后评估NE和MHPG的全组织含量。结果显示,光周期对雄性有轻微影响,但手术无总体影响。由于全组织含量分析可能因合成和储存速率的同时变化而变得复杂,因此在实验2中,使用微透析法评估雌性仓鼠细胞外NE和MHPG的水平。松果体切除完全阻止了短日照诱导的促黄体生成素抑制,但仅部分阻止了短日照对PRL的影响。此外,在暴露于短日照的松果体切除和假手术动物中,NE和MHPG水平均显著升高。这些结果表明,室旁核内的NE释放会抑制循环PRL水平,这是直接光信息可以独立于松果体褪黑素信号影响神经内分泌轴的一种机制。

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