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卵巢上神经切断对未成年大鼠类固醇激素分泌的急性刺激作用。

Effects on steroid hormones secretion resulting from the acute stimulation of sectioning the superior ovarian nerve to pre-pubertal rats.

机构信息

Biology of Reproduction Research Unit, Physiology of Reproduction Laboratory, Facultad de Estudios Superiores Zaragoza, UNAM, AP 9-020, CP15000, México, DF Mexico.

出版信息

Reprod Biol Endocrinol. 2012 Oct 30;10:88. doi: 10.1186/1477-7827-10-88.

Abstract

In the adult rat, neural signals arriving to the ovary via the superior ovarian nerve (SON) modulate progesterone (P4), testosterone (T) and estradiol (E2) secretion. The aims of the present study were to analyze if the SON in the pre-pubertal rat also modulates ovarian hormone secretion and the release of follicle stimulating hormone (FSH) and luteinizing (LH) hormone. P4, T, E2, FSH and LH serum levels were measured 30 or 60 minutes after sectioning the SON of pre-pubertal female rats. Our results indicate that the effects on hormone levels resulting from unilaterally or bilaterally sectioning the SON depends on the analyzed hormone, and the time lapse between surgery and autopsy, and that the treatment yielded asymmetric results. The results also suggest that in the pre-pubertal rat the neural signals arriving to the ovaries via the SON regulate the enzymes participating in P4, T and E2 synthesis in a non-parallel way, indicating that the mechanisms regulating the synthesis of each hormone are not regulated by the same signals. Also, that the changes in the steroids hormones are not explained exclusively by the modifications in gonadotropins secretion. The observed differences in hormone levels between rats sacrificed 30 and 60 min after surgery reflect the onset of the compensatory systems regulating hormones secretion.

摘要

在成年大鼠中,通过卵巢上神经(SON)到达卵巢的神经信号调节孕激素(P4)、睾酮(T)和雌二醇(E2)的分泌。本研究的目的是分析青春期前大鼠的 SON 是否也调节卵巢激素的分泌以及促卵泡激素(FSH)和促黄体生成素(LH)的释放。在青春期前雌性大鼠的 SON 被切断 30 或 60 分钟后,测量 P4、T、E2、FSH 和 LH 的血清水平。我们的结果表明,单侧或双侧切断 SON 对激素水平的影响取决于所分析的激素以及手术和尸检之间的时间间隔,并且该治疗产生了不对称的结果。结果还表明,在青春期前大鼠中,通过 SON 到达卵巢的神经信号以非平行的方式调节参与 P4、T 和 E2 合成的酶,表明调节每种激素合成的机制不受相同信号的调节。此外,类固醇激素的变化不能仅通过性腺激素分泌的改变来解释。术后 30 和 60 分钟处死的大鼠之间激素水平的差异反映了调节激素分泌的代偿系统的启动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0476/3520866/d4161b6666f7/1477-7827-10-88-1.jpg

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