卵泡和黄体黄体酮协同作用维持大鼠5天周期。

Revista espanola de fisiologia Pub Date : 1996-12-01
J E Sánchez-Criado, A Ruiz, M Tébar, J A Mattheij
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引用次数: 0

摘要

大鼠卵巢周期的长短是由黄体黄体酮分泌的持续时间决定的。排卵前卵泡分泌的黄体酮对前期发情的作用也与4天周期大鼠的周期长度有关。为了研究卵泡孕酮和黄体孕酮是否参与维持5天周期,研究了抗孕激素RU486 (5 mg用于发情前期或发情期)对5天周期大鼠和多巴胺激动剂CB154 (1 mg用于发情期)诱导的4天周期大鼠的发情周期长度和血清LH浓度的影响。此外,在随后的排卵当天测定血清孕酮浓度,以观察RU486治疗后是否发生了CL功能的激活。5日龄大鼠和cb154注射大鼠发情后均有3天的发情周期,发情后RU486使5日龄大鼠的发情周期缩短1天,而cb154注射大鼠的发情周期缩短1天。经RU486治疗后,两种周期型患者血清LH基础浓度升高,LH峰值降低。注射RU486 5 d大鼠血清孕酮浓度仅升高。这些结果表明卵泡孕酮和黄体孕酮在维持5天周期大鼠发情周期长度方面协同作用,功能活性CL仅在催乳素完全激增的作用下才增加孕酮的产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Follicular and luteal progesterone synergize to maintain 5-day cyclicity in rats.

The length of the ovarian cycle in rat is determined by the duration of progesterone secretion from the corpora lutea (CL) during diestrus. The action of progesterone secretion from the preovulatory follicles on proestrus is also responsible for the cycle length in 4-day cyclic rats. To study whether follicular and luteal progesterone participate in the maintenance of 5-day cyclicity, the effects of the antiprogestagen RU486 (5 mg on proestrus or estrus) on estrous cycle length and on the serum concentrations of LH in 5-day cyclic rats and in 4-day cycle experimentally induced by the dopamine agonist CB154 (1 mg on estrus) were investigated. Furthermore, serum concentrations of progesterone on the day of ensuing ovulation were measured to see whether activation of the CL function after treatment with RU486 had occurred. Both 5-day and CB154-injected rats had a 3-day estrous cycle after RU486 on proestrus, while RU486 on estrus shortened by 1-day the estrous cycle length in 5-day but not in CB154-injected rats. Basal serum concentrations of LH increased and the LH surge decreased after RU486 treatment in both cycle types. Serum concentrations of progesterone rose only in 5-day rats injected with RU486. These results indicate that the actions of both follicular and luteal progesterone synergize in maintaining the length of the estrous cycle in 5-day cyclic rats and that functionally active CL increase progesterone production only under the action of a complete surge of prolactin.

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