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新生期雄激素化雌性大鼠下丘脑-垂体-卵巢轴的分析

Analysis of the hypothalamic-pituitary-ovary axis in the neonatally-androgenized female rat.

作者信息

Spinedi E, Mariani V, Bulfon M, Colombani-Vidal M, Scaglia H

机构信息

Centro de Referencia de Radioinmunoensayo, Centro de Especialistas en Analisis Biologicos Distrito I, La Plata, Argentina.

出版信息

J Endocrinol Invest. 1990 Jun;13(6):481-8. doi: 10.1007/BF03348604.

Abstract

The administration of testosterone propionate (TP) in the female rat at the neonatal age has been used for several yr as a model to study anovulation during adulthood. The present work was designed in order to see whether some neuroendocrine parameters vary with age in this animal model. Hypothalamic LHRH content and LH-FSH anterior pituitary (AP) content and plasma levels were evaluated in samples taken from both neonatally-androgenized and littermate control female rats at different ages (15 to 100 days old). Additionally, we have studied pulsatile LH-FSH released in plasma and in vivo AP response to LHRH in both neonatally-androgenized and control female rats during adulthood. The results indicate that the neonatal TP treatment did not induce any change in hypothalamic LHRH content over development. Neonatally androgenized rats have decreased both LH-FSH AP content and plasma levels at the infantile age (15-day old). LH-FSH AP content remained reduced in samples taken up to the 30th day of age. Plasma LH-FSH levels on the day 30 of age were similar in both groups. TP-treated rats studied on the 100th day of age had: a) an altered pulsatile rhythm of gonadotropin release in plasma due to the decreased LH-FSH trough and average mean values, and to the diminished FSH peak amplitude values, as well as an increased LH:FSH ratio; and b) an impaired in vivo LHRH-induced LH-FSH release.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在新生雌性大鼠中给予丙酸睾酮(TP)多年来一直被用作研究成年期无排卵的模型。本研究旨在观察在该动物模型中一些神经内分泌参数是否随年龄变化。对不同年龄(15至100日龄)的新生雄激素化雌性大鼠和同窝对照雌性大鼠的样本进行评估,测定下丘脑促性腺激素释放激素(LHRH)含量、促黄体生成素-促卵泡生成素(LH-FSH)垂体前叶(AP)含量及血浆水平。此外,我们还研究了成年期新生雄激素化雌性大鼠和对照雌性大鼠血浆中LH-FSH的脉冲式释放以及垂体前叶对LHRH的体内反应。结果表明,新生期TP处理在发育过程中未引起下丘脑LHRH含量的任何变化。新生雄激素化大鼠在婴儿期(15日龄)LH-FSH垂体前叶含量和血浆水平均降低。直至30日龄时采集的样本中,LH-FSH垂体前叶含量仍较低。两组在30日龄时的血浆LH-FSH水平相似。在100日龄时研究的TP处理大鼠有:a)由于LH-FSH谷值和平均均值降低、FSH峰值幅度值减小以及LH:FSH比值增加,导致血浆中促性腺激素释放的脉冲节律改变;b)体内LHRH诱导的LH-FSH释放受损。(摘要截短于250字)

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