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哺乳动物背根神经节中卫星神经胶质细胞之间的染料偶联。

Dye coupling among satellite glial cells in mammalian dorsal root ganglia.

作者信息

Huang Tian-Ying, Cherkas Pavel S, Rosenthal David W, Hanani Menachem

机构信息

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

出版信息

Brain Res. 2005 Mar 2;1036(1-2):42-9. doi: 10.1016/j.brainres.2004.12.021.

Abstract

Dorsal root ganglia (DRG) are key elements in sensory signaling under physiological and pathological conditions. Little is known about electrical coupling among cells in these ganglia. In this study, we injected the fluorescent dye Lucifer yellow (LY) into single cells to examine dye coupling in DRG. We found no dye coupling between neurons or between neurons and their attendant satellite glial cells (SGCs). In mouse DRG, we observed that in 26.2% of the cases SGCs that surround a given neuron were dye coupled. In only 3.2% of the cases SGCs that make envelopes around different neurons were coupled. The data from mouse ganglia were very similar to those from rat and guinea pig DRG. The results obtained by injection of the tracer biocytin were very similar to those observed with LY. The coupling incidence within the envelopes increased 3.1-fold by high extracellular pH (8.0), but coupling between envelopes was not affected. Acidic pH (6.8) reduced the coupling. High extracellular K+ (9.4 mM) increased the coupling 2.4-fold and 4.7-fold within and between envelopes, respectively. Low extracellular Ca2+ (0.5, 1.0 mM) partly reversed the effect of high K+ on coupling. The results showed that SGCs in mammalian sensory ganglia are connected by gap junctions. This coupling is very sensitive to changes in pH, and can therefore be modulated under various physiological and pathological conditions. The dependence of the coupling on extracellular K+ and Ca2+ suggests that the permeability of gap junctions can be altered by physiological and pharmacological stimuli.

摘要

背根神经节(DRG)是生理和病理条件下感觉信号传导的关键元件。对于这些神经节中细胞间的电耦合了解甚少。在本研究中,我们将荧光染料路西法黄(LY)注入单个细胞以检测DRG中的染料耦合。我们发现神经元之间或神经元与其伴随的卫星神经胶质细胞(SGC)之间没有染料耦合。在小鼠DRG中,我们观察到在26.2%的情况下,围绕给定神经元的SGC是染料耦合的。在仅3.2%的情况下,围绕不同神经元的SGC是耦合的。来自小鼠神经节的数据与来自大鼠和豚鼠DRG的数据非常相似。通过注入示踪剂生物素获得的结果与用LY观察到的结果非常相似。高细胞外pH(8.0)使包膜内的耦合发生率增加3.1倍,但包膜间的耦合不受影响。酸性pH(6.8)降低了耦合。高细胞外K+(9.4 mM)分别使包膜内和包膜间的耦合增加2.4倍和4.7倍。低细胞外Ca2+(0.5、1.0 mM)部分逆转了高K+对耦合的影响。结果表明,哺乳动物感觉神经节中的SGC通过缝隙连接相连。这种耦合对pH变化非常敏感,因此可以在各种生理和病理条件下受到调节。耦合对细胞外K+和Ca2+的依赖性表明,缝隙连接的通透性可通过生理和药理刺激而改变。

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