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在接受脉冲式促黄体生成激素释放激素输注的垂体移植去垂体大鼠中,雌激素抑制促黄体生成激素(LH)分泌,但不抑制促卵泡激素分泌。

Estrogen inhibits luteinizing hormone (LH), but not follicle-stimulating hormone secretion in hypophysectomized pituitary-grafted rats receiving pulsatile LH-releasing hormone infusions.

作者信息

Strobl F J, Levine J E

机构信息

Department of Neurobiology and Physiology, Northwestern University, Evanston, Illinois 60201.

出版信息

Endocrinology. 1988 Jul;123(1):622-30. doi: 10.1210/endo-123-1-622.

Abstract

The differential feedback actions of estrogen (E2) on gonadotropin secretion were studied by means of an in vivo isolated pituitary paradigm. Adult female rats were hypophysectomized (hypox) and the next day received single anterior pituitary transplants (graft) under the kidney capsule. At the same time rats underwent bilateral ovariectomy. On the third day each animal was fitted with a catheter system which allowed for intermittent infusions of LHRH (250 ng/5 min.h) and chronic blood sampling. Rats received LHRH infusions for 7 days. On the sixth day of LHRH infusions blood samples were collected for 4 h 5, 15, 25, 35, 45 min after each hourly LHRH pulse. After 1 h of sampling, animals received sc injections of 2 micrograms estradiol benzoate (EB; n = 5) or oil vehicle (n = 5). Plasma LH, FSH, E2, and PRL levels in samples from all groups were determined by RIA. In hypox/graft rats LH release, but not FSH release, was pulsatile in response to the hourly LHRH infusions. Injection of EB in the hypox/graft rats significantly (P less than 0.05) suppressed LH release within 3 h by 57%, while FSH was unaffected. PRL levels were elevated by approximately 10-fold in the hypox/graft animals compared to those in pituitary-intact rats. These levels, however, were not changed as a function of steroid treatment and, therefore, could not account for the effects of EB on LH secretion. On the basis of these observations we conclude that 1) a major inhibitory effect of an acute injection of EB on LH secretion is exerted by a direct action on pituitary gonadotropes, and 2) E2 can differentially affect the release of LH and FSH by an intrapituitary mechanism. It is hoped that development of this model will allow for further investigation of the cellular mechanisms that mediate feedback actions of E2 on pituitary gonadotropes exposed to intermittent LHRH stimulation.

摘要

通过体内垂体分离模型研究了雌激素(E2)对促性腺激素分泌的差异性反馈作用。成年雌性大鼠接受垂体切除(hypox),次日在肾被膜下进行单个垂体前叶移植(graft)。同时,大鼠接受双侧卵巢切除术。第三天,每只动物安装一个导管系统,用于间歇性输注促性腺激素释放激素(LHRH,250 ng/5 min·h)并进行慢性采血。大鼠接受LHRH输注7天。在LHRH输注的第6天,每小时LHRH脉冲后5、15、25、35、45分钟采集血样4小时。采样1小时后,动物皮下注射2微克苯甲酸雌二醇(EB;n = 5)或油性载体(n = 5)。通过放射免疫分析法测定所有组样本中的血浆促黄体生成素(LH)、促卵泡生成素(FSH)、E2和催乳素(PRL)水平。在hypox/graft大鼠中,LH释放呈脉冲式,而FSH释放对每小时LHRH输注无脉冲反应。在hypox/graft大鼠中注射EB在3小时内显著(P < 0.05)抑制LH释放57%,而FSH不受影响。与垂体完整的大鼠相比,hypox/graft动物的PRL水平升高约10倍。然而,这些水平并未随类固醇处理而改变,因此不能解释EB对LH分泌的影响。基于这些观察结果,我们得出结论:1)急性注射EB对LH分泌的主要抑制作用是通过对垂体促性腺细胞的直接作用发挥的;2)E2可通过垂体内部机制差异性地影响LH和FSH的释放。希望该模型的开发将有助于进一步研究介导E2对暴露于间歇性LHRH刺激的垂体促性腺细胞反馈作用的细胞机制。

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