内分泌对海马雌激素合成的调节?

Q Medicine
Janine Prange-Kiel , Tobias Schmutterer , Lars Fester , Lepu Zhou , Philipp Imholz , Nicola Brandt , Ricardo Vierk , Hubertus Jarry , Gabriele M. Rune
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引用次数: 36

摘要

卵巢中雌二醇的合成是由下丘脑分泌的促性腺激素释放激素(GnRH)和垂体分泌的促性腺激素介导的反馈机制调节的。雌二醇的合成也发生在海马体中。在雌性动物的海马切片培养中,GnRH调节雌二醇合成的剂量依赖性。因此,海马和卵巢的雌二醇合成都是由GnRH同步的。海马源性雌二醇对突触的稳定和维持至关重要,因为它稳定了海马神经元的脊柱细胞骨架。然而,抑制小鼠海马雌二醇合成会导致雌性小鼠脊椎和脊椎突触的丧失,而雄性小鼠则不会。将GnRH立体定向应用于雌性大鼠海马,证实了GnRH在体内对雌性海马雌二醇合成和突触密度的调节作用。GnRH的这种调节作用必然导致雌性海马棘密度的发情周期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Endocrine regulation of estrogen synthesis in the hippocampus?

Estradiol synthesis in the ovaries is regulated via feedback mechanisms mediated by gonadotrophin-releasing hormone (GnRH) and gonadotrophins, secreted by the hypothalamus and the pituitary, respectively. Estradiol synthesis also takes place in the hippocampus. In hippocampal slice cultures of female animals, GnRH regulates estradiol synthesis dose-dependently. Hence, both hippocampal and ovarian estradiol synthesis are synchronized by GnRH. Hippocampus-derived estradiol is essential to synapse stability and maintenance because it stabilizes the spine cytoskeleton of hippocampal neurons. Inhibition of hippocampal estradiol synthesis in mice, however, results in loss of spines and spine synapses in females, but not in males. Stereotaxic application of GnRH to the hippocampus of female rats confirms the regulatory role of GnRH on estradiol synthesis and synapse density in the female hippocampus in vivo. This regulatory role of GnRH necessarily results in estrus cyclicity of spine density in the hippocampus of females.

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来源期刊
CiteScore
4.67
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Progress in Histochemistry and Cytochemistry publishes comprehensive and analytical reviews within the entire field of histochemistry and cytochemistry. Methodological contributions as well as papers in the fields of applied histo- and cytochemistry (e.g. cell biology, pathology, clinical disciplines) will be accepted.
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