首页> 外文期刊>The Journal of Physiology >Adiponectin selectively inhibits oxytocin neurons of the paraventricular nucleus of the hypothalamus.
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Adiponectin selectively inhibits oxytocin neurons of the paraventricular nucleus of the hypothalamus.

机译:脂联素选择性地抑制下丘脑室旁核的催产素神经元。

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Adiponectin is an adipocyte derived hormone which acts in the brain to modulate energy homeostasis and autonomic function. The paraventricular nucleus of the hypothalamus (PVN) which plays a key role in controlling pituitary hormone secretion has been suggested to be a central target for adiponectin actions. A number of hormones produced by PVN neurons have been implicated in the regulation of energy homeostasis including oxytocin, corticotropin releasing hormone and thyrotropin releasing hormone. In the present study we investigated the role of adiponectin in controlling the excitability of magnocellular (MNC - oxytocin or vasopressin secreting) neurons within the PVN. Using RT-PCR techniques we have shown expression of both adiponectin receptors in the PVN. Patch clamp recordings from MNC neurons in hypothalamic slices have also identified mixed (27% hyperpolarization, 42% depolarization) effects of adiponectin in modulating the excitability of the majority of MNC neurons tested. These effects are maintained when cells are placed in synaptic isolation using tetrodotoxin. Additionally we combined electrophysiological recordings with single cell RT-PCR to examine the actions of adiponectin on MNC neurons which expressed oxytocin only, vasopressin only, or both oxytocin and vasopressin mRNA and assess the profile of receptor expression in these subgroups. Adiponectin was found to hyperpolarize 100% of oxytocin neurons tested (n = 6), while vasopressin cells, while all affected (n = 6), showed mixed responses. Further analysis indicates oxytocin neurons express both receptors (6/7) while vasopressin neurons express either both receptors (3/8) or one receptor (5/8). In contrast 6/6 oxytocin/vasopressin neurons were unaffected by adiponectin. Co-expressing oxytocin and vasopressin neurons express neither receptor (4/6). The results presented in this study suggest that adiponectin plays specific roles in controlling the excitability oxytocin secreting neurons, actions which correlate with the current literature showing increased oxytocin secretion in the obese population.
机译:脂联素是源自脂肪细胞的激素,其在脑中起作用以调节能量稳态和自主功能。在控制垂体激素分泌中起关键作用的下丘脑室旁核(PVN)已被认为是脂联素作用的主要靶点。 PVN神经元产生的许多激素与能量稳态有关,包括催产素,促肾上腺皮质激素释放激素和促甲状腺激素释放激素。在本研究中,我们调查了脂联素在控制PVN内大细胞(MNC-催产素或加压素分泌)神经元的兴奋性中的作用。使用RT-PCR技术,我们已经显示了PVN中两种脂联素受体的表达。下丘脑切片中MNC神经元的膜片钳记录还确定了脂联素在调节大多数测试的MNC神经元的兴奋性方面的混合作用(27%超极化,42%去极化)。当使用河豚毒素将细胞置于突触分离中时,这些效应得以维持。此外,我们将电生理学记录与单细胞RT-PCR结合起来,以检查脂联素对仅表达催产素,仅表达加压素或同时表达催产素和加压素mRNA的MNC神经元的作用,并评估这些亚组中受体表达的特征。脂联素被发现能使100%的催产素神经元超极化(n = 6),而血管加压素细胞虽然全部受到影响(n = 6),却表现出不同的反应。进一步的分析表明催产素神经元表达两种受体(6/7),而加压素神经元表达两种受体(3/8)或一种受体(5/8)。相反,6/6催产素/加压素神经元不受脂联素的影响。共表达催产素和加压素神经元均不表达受体(4/6)。在这项研究中提出的结果表明,脂联素在控制催产素分泌神经元的兴奋性中起特定作用,该作用与目前的文献显示肥胖人群中催产素分泌的增加有关。

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