首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Ethanol inhibits luteinizing hormone-releasing hormone (LHRH) secretion by blocking the response of LHRH neuronal terminals to nitric oxide.
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Ethanol inhibits luteinizing hormone-releasing hormone (LHRH) secretion by blocking the response of LHRH neuronal terminals to nitric oxide.

机译:乙醇通过阻断LHRH神经元末端对一氧化氮的响应来抑制黄体生成素释放激素(LHRH)的分泌。

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摘要

It has previously been shown that alcohol can suppress reproduction in humans, monkeys, and small rodents by inhibiting release of luteinizing hormone (LH). The principal action is via suppression of the release of LH-releasing hormone (LHRH) both in vivo and in vitro. The present experiments were designed to determine the mechanism by which alcohol inhibits LHRH release. Previous research has indicated that the release of LHRH is controlled by nitric oxide (NO). The proposed pathway is via norepinephrine-induced release of NO from NOergic neurons, which then activates LHRH release. In the present experiments, we further evaluated the details of this mechanism in male rats by incubating medial basal hypothalamic (MBH) explants in vitro and examining the release of NO, prostaglandin E2 (PGE2), conversion of arachidonic acid to prostanoids, and production of cGMP. The results have provided further support for our theory of LHRH control. Norepinephrine increased the release of NO as measured by conversion of [14C]arginine to [14C]citrulline, and this increase was blocked by the alpha 1 receptor blocker prazosin. Furthermore, the release of LHRH induced by nitroprusside (NP), a donor of NO, is related to the activation of soluble guanylate cyclase by NO since NP increased cGMP release from MBHs and cGMP also released LHRH. Ethanol had no effect on the production of NO by MBH explants or the increased release of NO induced by norepinephrine. Therefore, it does not act at that step in the pathway. Ethanol also failed to affect the increase in cGMP induced by NP. On the other hand, as might be expected from previous experiments indicating that LHRH release was brought about by PGE2, NP increased the conversion of [14C]arachidonic acid to its metabolites, particularly PGE2. Ethanol completely blocked the release of LHRH induced by NP and the increase in PGE2 induced by NP. Therefore, the results support the theory that norepinephrine acts to stimulate NO release from NOergic neurons. This NO diffuses to the LHRH terminals where it activates guanylate cyclase, leading to an increase in cGMP. At the same time, it also activates cyclooxygenase. The increase in cGMP increases intracellular free calcium, activating phospholipase A2 to provide arachidonic acid, the substrate for conversion by the activated cyclooxygenase to PGE2, which then activates the release of LHRH. Since alcohol inhibits the conversion of labeled arachidonic acid to PGE2, it must act either directly to inhibit cyclooxygenase or perhaps it may act by blocking the increase in intracellular free calcium induced by cGMP, which is crucial for activation of of both phospholipase A2 and cyclooxygenase.
机译:以前已经证明,酒精可以通过抑制黄体生成激素(LH)的释放来抑制人类,猴子和小啮齿动物的繁殖。主要作用是通过体内和体外抑制LH释放激素(LHRH)的释放。设计本实验以确定醇抑制LHRH释放的机理。先前的研究表明,LHRH的释放受一氧化氮(NO)控制。拟议的途径是通过去甲肾上腺素诱导的NO能神经元释放NO,然后激活LHRH释放。在本实验中,我们通过体外培养内侧下丘脑(MBH)外植体并检查NO的释放,前列腺素E2(PGE2)的释放,花生四烯酸向前列腺素的转化以及三聚体的产生,进一步评估了雄性大鼠中该机制的细节。 cGMP。结果为我们的LHRH控制理论提供了进一步的支持。通过[14C]精氨酸向[14C]瓜氨酸的转化来测定,去甲肾上腺素增加了NO的释放,而这种增加被α1受体阻滞剂prazosin所阻止。此外,NO的供体硝普钠(NP)诱导的LHRH的释放与NO激活可溶性鸟苷酸环化酶有关,因为NP增加了MBHs的cGMP释放,而cGMP也释放了LHRH。乙醇对MBH外植体产生NO或由去甲肾上腺素诱导的NO释放增加没有影响。因此,它不会在通路的这一步起作用。乙醇也不能影响NP诱导的cGMP的增加。另一方面,从先前的实验中可以预期到,表明LHRH释放是由PGE2引起的,NP增加了[14C]花生四烯酸向其代谢物,特别是PGE2的转化。乙醇完全阻断了NP诱导的LHRH的释放和NP诱导的PGE 2的增加。因此,结果支持了去甲肾上腺素起到刺激NO释放神经元NO释放的理论。这种NO扩散到LHRH末端,在那里它激活鸟苷酸环化酶,导致cGMP增加。同时,它也激活环氧合酶。 cGMP的增加会增加细胞内游离钙,激活磷脂酶A2以提供花生四烯酸,花生四烯酸是被激活的环加氧酶转化为PGE2的底物,然后激活LHRH的释放。由于酒精会抑制标记的花生四烯酸向PGE2的转化,因此它必须直接起到抑制环氧合酶的作用,或者可能通过阻断cGMP诱导的细胞内游离钙的增加而起作用,这对于激活磷脂酶A2和环氧合酶至关重要。

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