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大鼠腺垂体激素神经控制的个体发生学研究。II. 催乳素。

Ontogenic studies of the neural control of adenohypophyseal hormones in the rat. II. Prolactin.

作者信息

Becú-Villalobos D, Lacau-Mengido I M, Díaz-Torga G S, Libertun C

机构信息

Instituto de Biología y Medicina Experimental, Buenos Aires, Argentina.

出版信息

Cell Mol Neurobiol. 1992 Feb;12(1):1-19. doi: 10.1007/BF00711635.

Abstract
  1. Serum prolactin levels are low during the first 20 days of life and gradually increase toward puberty, in both male and female rats. 2. There is an age-related increase in the cell population engaged in prolactin secretion, as well as an increase in the synthesis of prolactin and of the amount of prolactin secreted from individual lactotropes. 3. The gradual increase in prolactin levels in the third week of life is not related to a decrease in dopaminergic inhibition but to an increase in the efficiency of prolactin releasing factors such as estrogen, serotonin, opiates, and posterior pituitary extracts. 4. Prolactin release induced by physiological factors, such as stress, cervical stimulation, or the expression of spontaneous diurnal and nocturnal surges, requires maturational events within the hypothalamic-pituitary axis which are evident at the end of the third week of life. 5. In the female rat the steadily increasing levels of prolactin are involved in the timing of puberty eclosion acting at the ovary and at the brain. 6. In the prepubertal male rat increasing titers of prolactin may be involved in testicular and accessory organ development and may facilitate the actions of luteinizing hormone, follicle stimulating hormone, and testosterone on male sexual organs.
摘要
  1. 在出生后的前20天,雄性和雌性大鼠的血清催乳素水平都较低,并在青春期逐渐升高。2. 参与催乳素分泌的细胞数量随年龄增长而增加,催乳素的合成以及单个催乳细胞分泌的催乳素量也会增加。3. 出生后第三周催乳素水平的逐渐升高与多巴胺能抑制作用的降低无关,而是与催乳素释放因子(如雌激素、5-羟色胺、阿片类物质和垂体后叶提取物)的效率提高有关。4. 由生理因素(如应激、子宫颈刺激或自发性昼夜波动的出现)诱导的催乳素释放,需要下丘脑-垂体轴内的成熟事件,这些事件在出生后第三周结束时很明显。5. 在雌性大鼠中,不断升高的催乳素水平参与了青春期启动的时间调节,作用于卵巢和大脑。6. 在青春期前的雄性大鼠中,不断升高的催乳素水平可能参与睾丸和附属器官的发育,并可能促进黄体生成素、卵泡刺激素和睾酮对雄性性器官的作用。

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