Suppr超能文献

胆碱能对肠系膜神经节的影响作用于发情期大鼠卵巢甾体激素和一氧化氮的释放:一种离体系统的特性研究

The cholinergic influence on the mesenteric ganglion affects the liberation of ovarian steroids and nitric oxide in oestrus day rats: characterization of an ex vivo system.

作者信息

Orozco Adriana Vega, Sosa Zulema, Fillipa Verónica, Mohamed Fabian, Rastrilla Ana María

机构信息

Laboratorio de Biología de la Reproducción (LABIR), Argentina.

出版信息

J Endocrinol. 2006 Dec;191(3):587-98. doi: 10.1677/joe.1.06859.

Abstract

The axons that constitute the ovarian nervous plexus originate mostly in the principal neurons of the superior mesenteric ganglion (SMG) that is part of the sympathetic ganglionic chain and exhibits cholinergic receptors. In order to observe the effect of acetylcholine, the main neurotransmitter in the ganglionic transmission, the purpose of the present work was: first, to standardize an integrated ex vivo superior mesenteric ganglion-ovarian nervous plexus-ovary (SMG-ONP-O) system in oestrus day rats; secondly, to determine if the ganglionic cholinergic stimulus modifies the release of nitric oxide and steroids in the ovary compartment in the absence of humoral factors; and thirdly, to investigate if there are differences in the responses between the left and right ovaries caused by the neural stimulus. The ex vivo experimental left and right systems were developed and standardized. The systems were incubated in Krebs-Ringer phosphate buffer in a Dubnoff metabolic shaker. The progesterone release was determined to standardize the incubation times, obtaining different responses between the left and right systems, which shows that both systems have their own autonomic tone. Non-specific stimulation with KCl in the ganglion compartment provoked different responses in terms of release of progesterone and oestradiol. Progesterone decreased in the left and right systems. However, oestradiol diminished at short times and increased at 60 and 120 min in the left ovary, whereas it increases at 30 and 60 min in the right ovary. These different responses show the sensitivity and viability of both systems. When acetylcholine was used in the ganglion compartment, the release of nitric oxide, progesterone, androstenedione and oestradiol was evaluated. The liberation of nitrite increased at 15, 30 and 60 min in the left system and decreased in the right system at 120 min. Progesterone showed a decrease in its release at 15, 30 and 120 min and androstenedione at 15 min in the left ovary compartment. In the right ovary, only progesterone decreased in relation to the control at 120 min while androstenedione did not show significant changes. Oestradiol showed an increase in the left ovary compartment at all the studied times, while in the right ovary it did not show any changes. These results indicate that the neural stimulus from the superior mesenteric ganglion through the ovarian nervous plexus is one of the factors modulating the secretory activity of the ovarian steroids and nitric oxide. The system is viable and also shows a different sensitivity of the left ovary in relation to the right one at least in this cycle stage, characterized by marked irrigation and profound structural changes in the ovary.

摘要

构成卵巢神经丛的轴突大多起源于肠系膜上神经节(SMG)的主要神经元,该神经节是交感神经节链的一部分,且具有胆碱能受体。为了观察神经节传递中的主要神经递质乙酰胆碱的作用,本研究的目的是:第一,在发情期大鼠中建立一种离体整合的肠系膜上神经节-卵巢神经丛-卵巢(SMG-ONP-O)系统;第二,确定在没有体液因子的情况下,神经节胆碱能刺激是否会改变卵巢隔室中一氧化氮和类固醇的释放;第三,研究神经刺激引起的左右卵巢反应是否存在差异。开发并标准化了离体实验的左右系统。将这些系统置于杜布诺夫代谢摇床中的 Krebs-Ringer 磷酸盐缓冲液中孵育。测定孕酮释放以标准化孵育时间,结果显示左右系统有不同反应,这表明两个系统都有自身的自主神经张力。神经节隔室中用氯化钾进行的非特异性刺激在孕酮和雌二醇释放方面引发了不同反应。左右系统中的孕酮均下降。然而,雌二醇在左卵巢短时间内减少,在 60 分钟和 120 分钟时增加,而在右卵巢中在 30 分钟和 60 分钟时增加。这些不同反应显示了两个系统的敏感性和活力。当在神经节隔室中使用乙酰胆碱时,评估了一氧化氮、孕酮、雄烯二酮和雌二醇的释放。左系统中亚硝酸盐的释放在 15 分钟、30 分钟和 60 分钟时增加,右系统在 120 分钟时减少。左卵巢隔室中孕酮在 15 分钟、30 分钟和 120 分钟时释放减少,雄烯二酮在 15 分钟时减少。在右卵巢中,仅孕酮在 120 分钟时相对于对照减少,而雄烯二酮没有显著变化。雌二醇在左卵巢隔室中在所有研究时间均增加,而在右卵巢中未显示任何变化。这些结果表明,来自肠系膜上神经节通过卵巢神经丛的神经刺激是调节卵巢类固醇和一氧化氮分泌活动的因素之一。该系统是可行的,并且至少在这个以卵巢明显充血和深刻结构变化为特征的周期阶段,显示出左卵巢相对于右卵巢有不同的敏感性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验