Involvement of Ovarian Estradiol Biosynthesis and Pituitary FSH Expression in the Mechanism of Human Chorionic Gonadotropin Stimulation of Uterine Growth in Immature Female Rats

Sandrine Rafert, J. Mariot, D. Klett, Y. Combarnous
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引用次数: 2

Abstract

In a previous work, we showed that human Chorionic Gonadotropin (hCG) alone is able to stimulate uterine ponderal growth in immature female rats. In the present paper, we provide new information indicating that a single 100 ng hCG injection increased ovarian androgen availability and aromatase activity. These changes are consistent with an increase in ovarian estradiol secretion. Ovarian activin βA and activin βB subunit RNAs expression were also increased following hCG injection. Most interestingly, this treatment also led to an increase in FSHβ subunit mRNA expression in the pituitary, which might be due to hCG-stimulated ovarian activin secretion. We have not been able so far to follow the kinetics of the plasma concentrations of activin and FSH in hCG-treated animals compared to control animals. This has to be explored in the future to provide a more complete assessment of our model.
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卵巢雌二醇生物合成和垂体FSH表达参与人绒毛膜促性腺激素刺激未成熟雌性大鼠子宫生长的机制
在之前的工作中,我们发现单独使用人绒毛膜促性腺激素(hCG)能够刺激未成熟雌性大鼠的子宫内膜生长。在本文中,我们提供了新的信息,表明单次100 ng hCG注射增加卵巢雄激素可用性和芳香化酶活性。这些变化与卵巢雌二醇分泌增加一致。注射hCG后,卵巢活化素βA和活化素βB亚基rna的表达也增加。最有趣的是,这种治疗还导致垂体中FSHβ亚基mRNA表达增加,这可能是由于hcg刺激卵巢激活素分泌所致。到目前为止,我们还无法跟踪与对照动物相比,hcg治疗动物血浆激活素和卵泡刺激素浓度的动力学。这需要在未来进行探索,以便对我们的模型进行更完整的评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Involvement of Ovarian Estradiol Biosynthesis and Pituitary FSH Expression in the Mechanism of Human Chorionic Gonadotropin Stimulation of Uterine Growth in Immature Female Rats Psychophysiological Stress Reactivity Relationships across the Menstrual Cycle. Perturbation of the Hematopoietic Profile by Anabolic Androgenic Steroids Systematic Literature Review of the Epidemiology of Nongenetic Forms of Hypogonadism in Adult Males Comparison of the Cutaneous Wound Healing of Ovariectomized Mouse at 12 Weeks with That of SHAM and Estrogen-Administered Mice
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