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大鼠视交叉上核中血清素代谢的动力学研究:神经内分泌影响(作者译)

[Kinetic study of serotonin metabolism in the suprachiasmatic nucleus of the rat: neuroendocrine incidence (author's transl)].

作者信息

Héry M, Dusticier G, Faudon M, Barrit M C, Héry F

出版信息

J Physiol (Paris). 1981;77(2-3):497-500.

PMID:6270319
Abstract

The suprachiasmatic nucleus (SCN), which is implicated in the regulation of several cyclic neuroendocrine rhythms, displays a conspicuous and apparently specific serotoninergic innervation. Our study was intended to establish more precise correlations between the incidence of serotonin (5 HT) metabolism in the activity of the SCN, and neuroendocrine rhythms. For this purpose, castrated female rats, having subcutaneous implants of estradiol, were studied. These animals display very marked circadian fluctuations in plasma levels of the pituitary hormones ACTH, LH and PRL; a relatively well-synchronized increment in all these hormones occurs between 11.00 and 15.00. Punches were obtained to determine the endogenous content of 5 HT, measured by a radioenzymatic technique, simultaneously in SCN and median eminence (ME). An index of SCN activity was determined from in vivo SCN 2-deoxy (1-14C) glucose (DG) uptake; the retention was estimated on radioautographs. Endogenous level of 5 HT displayed a marked circadian rhythm with a peak between 12.00 and 15.00 in the SCN; 5 HT levels were constant throughout the day in the ME. 14C-DG uptake was greater at 15.00 than at 9.00. However, after PCPA treatment or raphe lesions, the uptake of 14C-DG was the same at 9.00 and 15.00. Taken together, these results strongly suggest that in our model: (1) SCN displays a rhythm of activity in the light period; (2) SCN displays specific rhythms in the content of 5 HT; (3) the SCN rhythm of activity must be under an inhibitory control of 5 HT, since the lowest metabolic level is increased at 9.00 by inactivation of 5 HT system; (4) the close relationships between the initial release phase of several pituitary hormones, the increase of metabolic activity in the SCN and the higher level of the 5 HT in the nucleus suggest that 5 HT terminals in the SCN play an important part in the control of cyclic hormonal secretion.

摘要

视交叉上核(SCN)参与多种周期性神经内分泌节律的调节,具有明显且明显特定的5-羟色胺能神经支配。我们的研究旨在更精确地确定SCN活动中5-羟色胺(5-HT)代谢发生率与神经内分泌节律之间的相关性。为此,对皮下植入雌二醇的去势雌性大鼠进行了研究。这些动物的垂体激素促肾上腺皮质激素(ACTH)、促黄体生成素(LH)和催乳素(PRL)的血浆水平呈现出非常明显的昼夜波动;所有这些激素在11:00至15:00之间会出现相对同步的升高。通过放射性酶技术同时测定SCN和正中隆起(ME)中5-HT的内源性含量,获取组织块进行检测。通过体内SCN对2-脱氧(1-14C)葡萄糖(DG)的摄取来确定SCN活动指数;通过放射自显影片估计摄取量。5-HT的内源性水平呈现出明显的昼夜节律,在SCN中于12:00至15:00之间达到峰值;ME中的5-HT水平在一天中保持恒定。14C-DG摄取在15:00时比9:00时更高。然而,在接受对氯苯丙氨酸(PCPA)处理或中缝核损伤后,9:00和15:00时14C-DG的摄取量相同。综合这些结果强烈表明,在我们的模型中:(1)SCN在光照期呈现活动节律;(2)SCN在5-HT含量方面呈现特定节律;(3)SCN的活动节律必定受到5-HT的抑制性控制,因为通过5-HT系统失活,9:00时最低代谢水平会升高;(4)几种垂体激素的初始释放阶段、SCN中代谢活动的增加以及核内5-HT的较高水平之间的密切关系表明,SCN中的5-HT终末在周期性激素分泌的控制中起重要作用。

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