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内皮素-1对周围神经节中卫星神经胶质细胞的影响。

The effects of endothelin-1 on satellite glial cells in peripheral ganglia.

作者信息

Feldman-Goriachnik Rachel, Hanani Menachem

机构信息

Laboratory of Experimental Surgery, Hadassah-Hebrew University Medical Center, Mount Scopus, Jerusalem 91240, Israel.

Laboratory of Experimental Surgery, Hadassah-Hebrew University Medical Center, Mount Scopus, Jerusalem 91240, Israel.

出版信息

Neuropeptides. 2017 Jun;63:37-42. doi: 10.1016/j.npep.2017.03.002. Epub 2017 Mar 18.

Abstract

Endothelins (ET) are a family of highly active neuropeptides with manifold influences via ET receptors (ETR) in both the peripheral and central nervous systems. We have shown previously that satellite glial cells (SGCs) in mouse trigeminal ganglia (TG) are extremely sensitive to ET-1 in evoking [Ca] increase, apparently via ETR activation, but there is no functional information on ETR in SGCs of other peripheral ganglia. Here we tested the effects of ET-1 on SGCs in nodose ganglia (NG), which is sensory, and superior cervical ganglia (Sup-CG), which is part of the sympathetic nervous system, and further investigated the influence of ET-1 on SGCs in TG. Using calcium imaging we found that SGCs in intact, freshly isolated NG and Sup-CG are highly sensitive to ET-1, with threshold concentration at 0.1nM. Our results showed that [Ca] elevation in response to ET-1 was partially due to Ca influx from the extracellular space and partially to Ca release from intracellular stores. Using receptor selective ETR agonists and antagonists, we found that the responses were mediated by mixed ETR/ETR in SGCs of NG and predominantly by ETR in SGCs of Sup-CG. By employing intracellular dye injection we examined coupling among SGCs around different neurons in the presence of 5nM ET-1 and observed coupling inhibition in all the three ganglion types. In summary, our work showed that SGCs in mouse sensory and sympathetic ganglia are highly sensitive to ET-1 and that this peptide markedly reduces SGCs coupling. We conclude that ET-1, which may participate in neuron-glia communications, has similar functions in wide range of peripheral ganglia.

摘要

内皮素(ET)是一类高度活跃的神经肽家族,通过外周和中枢神经系统中的ET受体(ETR)产生多种影响。我们之前已经表明,小鼠三叉神经节(TG)中的卫星神经胶质细胞(SGC)对ET-1诱发的[Ca]升高极为敏感,显然是通过ETR激活,但关于其他外周神经节SGC中ETR的功能信息尚不存在。在这里,我们测试了ET-1对感觉性的结状神经节(NG)和作为交感神经系统一部分的颈上神经节(Sup-CG)中SGC的影响,并进一步研究了ET-1对TG中SGC的影响。使用钙成像,我们发现完整的、新鲜分离的NG和Sup-CG中的SGC对ET-1高度敏感,阈值浓度为0.1nM。我们的结果表明,ET-1引起的[Ca]升高部分归因于细胞外空间的Ca内流,部分归因于细胞内储存的Ca释放。使用受体选择性ETR激动剂和拮抗剂,我们发现NG的SGC中的反应由混合的ETR/ETR介导,而Sup-CG的SGC中的反应主要由ETR介导。通过细胞内染料注射,我们在存在5nM ET-1的情况下检查了不同神经元周围SGC之间的耦合,并观察到所有三种神经节类型中的耦合抑制。总之,我们的工作表明,小鼠感觉和交感神经节中的SGC对ET-1高度敏感,并且这种肽显著降低SGC耦合。我们得出结论,可能参与神经元-神经胶质细胞通讯的ET-1在广泛的外周神经节中具有相似的功能。

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