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阿片肽对下丘脑大细胞性血管加压素和催产素神经元电活动以及树突体肽释放的影响。

The effects of apelin on the electrical activity of hypothalamic magnocellular vasopressin and oxytocin neurons and somatodendritic Peptide release.

作者信息

Tobin Vicky A, Bull Philip M, Arunachalam Sathya, O'Carroll Anne-Marie, Ueta Yoichi, Ludwig Mike

机构信息

Centre for Integrative Physiology, University of Edinburgh, Edinburgh EH8 9XD, United Kingdom.

出版信息

Endocrinology. 2008 Dec;149(12):6136-45. doi: 10.1210/en.2008-0178. Epub 2008 Aug 14.

Abstract

Apelin, a novel peptide originally isolated from bovine stomach tissue extracts, is widely but selectively distributed throughout the nervous system. Vasopressin and oxytocin are synthesized in the magnocellular neurons of the hypothalamic supraoptic nucleus (SON) and paraventricular nucleus, which are apelin-rich regions in the central nervous system. We made extracellular electrophysiological recordings from the transpharyngeally exposed SON of urethane-anaesthetized rats to assess the role of apelin in the control of the firing activity of identified magnocellular vasopressin and oxytocin neurons in vivo. Apelin-13 administration onto SON neurons via microdialysis revealed cell-specific responses; apelin-13 increased the firing rates of vasopressin cells but had no effect on the firing rate of oxytocin neurons. A direct excitatory effect of apelin-13 on vasopressin cell activity is also supported by our in vitro studies showing depolarization of membrane potential and increase in action potential firing. To assess the effects of apelin-13 on somatodendritic peptide release, we used in vitro release studies from SON explants in combination with highly sensitive and specific RIA. Apelin-13 decreases basal (by 78%; P < 0.05; n = 6) and potassium-stimulated (by 57%; P < 0.05; n = 6) vasopressin release but had no effect on somatodendritic oxytocin release. Taken together, our data suggest a local autocrine feedback action of apelin on magnocellular vasopressin neurons. Furthermore, these data show a marked dissociation between axonal and dendritic vasopressin release with a decrease in somatodendritic release but an increase in electrical activity at the cell bodies, indicating that release from these two compartments can be regulated wholly independently.

摘要

阿片肽是最初从牛胃组织提取物中分离出的一种新型肽,在整个神经系统中广泛但选择性地分布。血管加压素和催产素在下丘脑视上核(SON)和室旁核的大细胞神经元中合成,这些区域是中枢神经系统中富含阿片肽的区域。我们对经咽暴露的、用乌拉坦麻醉的大鼠的SON进行了细胞外电生理记录,以评估阿片肽在体内对已鉴定的大细胞血管加压素和催产素神经元放电活动控制中的作用。通过微透析将阿片肽-13施用于SON神经元显示出细胞特异性反应;阿片肽-13增加了血管加压素细胞的放电频率,但对催产素神经元的放电频率没有影响。我们的体外研究也支持阿片肽-13对血管加压素细胞活性的直接兴奋作用,该研究显示膜电位去极化和动作电位发放增加。为了评估阿片肽-13对树突体肽释放的影响,我们结合高度敏感和特异的放射免疫分析(RIA),对SON外植体进行了体外释放研究。阿片肽-13减少了基础状态下(减少78%;P<0.05;n=6)和钾刺激下(减少57%;P<0.05;n=6)的血管加压素释放,但对树突体催产素释放没有影响。综上所述,我们的数据表明阿片肽对大细胞血管加压素神经元有局部自分泌反馈作用。此外,这些数据显示轴突和树突体血管加压素释放之间存在明显分离,树突体释放减少,但细胞体处的电活动增加,表明这两个区室的释放可以完全独立调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18d8/2670455/033cd470300b/ukmss-2705-f0001.jpg

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