Spray David C, Hanani Menachem
Dominick Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY, United States.
Laboratory of Experimental Surgery, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.
Neurosci Lett. 2019 Mar 16;695:46-52. doi: 10.1016/j.neulet.2017.06.035. Epub 2017 Jun 22.
Enhanced expression and function of gap junctions and pannexin (Panx) channels have been associated with both peripheral and central mechanisms of pain sensitization. At the level of the sensory ganglia, evidence includes augmented gap junction and pannexin1 expression in glial cells and neurons in inflammatory and neuropathic pain models and increased synchrony and enhanced cross-excitation among sensory neurons by gap junction-mediated coupling. In spinal cord and in suprapinal areas, evidence is largely limited to increased expression of relevant proteins, although in several rodent pain models, hypersensitivity is reduced by treatment with gap junction/Panx1 channel blocking compounds. Moreover, targeted modulation of Cx43 expression was shown to modulate pain thresholds, albeit in somewhat contradictory ways, and mice lacking Panx1 expression globally or in specific cell types show depressed hyperalgesia. We here review the evidence for involvement of gap junctions and Panx channels in a variety of animal pain studies and then discuss ways in which gap junctions and Panx channels may mediate their action in pain processing. This discussion focusses on spread of signals among satellite glial cells, in particular intercellular Ca waves, which are propagated through both gap junction and Panx1-dependent routes and have been associated with the phenomenon of spreading depression and the malady of migraine headache with aura.
缝隙连接和泛连接蛋白(Panx)通道的表达增强及功能变化,与疼痛敏化的外周和中枢机制均相关。在感觉神经节水平,证据包括在炎症性和神经性疼痛模型中,神经胶质细胞和神经元内缝隙连接和泛连接蛋白1的表达增加,以及通过缝隙连接介导的耦合作用,感觉神经元之间的同步性增强和交叉兴奋增加。在脊髓和脊髓上区域,证据主要局限于相关蛋白表达增加,尽管在一些啮齿动物疼痛模型中,使用缝隙连接/Panx1通道阻断化合物治疗可减轻超敏反应。此外,尽管方式有所矛盾,但研究表明靶向调节Cx43的表达可调节疼痛阈值,并且在整体或特定细胞类型中缺乏Panx1表达的小鼠表现出痛觉过敏减轻。我们在此回顾了缝隙连接和Panx通道参与各种动物疼痛研究的证据,然后讨论了缝隙连接和Panx通道在疼痛处理过程中可能介导其作用的方式。该讨论聚焦于卫星神经胶质细胞之间信号的传播,特别是细胞间钙波,其通过缝隙连接和依赖Panx1的途径传播,并与扩散性抑制现象以及伴有先兆的偏头痛疾病相关。