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年龄相关变化在老鼠背根神经节中的神经元和卫星神经胶质细胞中。

Age-Related Changes in Neurons and Satellite Glial Cells in Mouse Dorsal Root Ganglia.

机构信息

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

Faculty of Medicine, Hebrew University of Jerusalem, Jerusalem 91240, Israel.

出版信息

Int J Mol Sci. 2023 Jan 31;24(3):2677. doi: 10.3390/ijms24032677.

Abstract

The effects of aging on the nervous system are well documented. However, most previous studies on this topic were performed on the central nervous system. The present study was carried out on the dorsal root ganglia (DRGs) of mice, and focused on age-related changes in DRG neurons and satellite glial cells (SGCs). Intracellular electrodes were used for dye injection to examine the gap junction-mediated coupling between neurons and SGCs, and for intracellular electrical recordings from the neurons. Tactile sensitivity was assessed with von Frey hairs. We found that 3-23% of DRG neurons were dye-coupled to SGCs surrounding neighboring neurons in 8-24-month (Mo)-old mice, whereas in young adult (3 Mo) mice, the figure was 0%. The threshold current for firing an action potential in sensory neurons was significantly lower in DRGs from 12 Mo mice compared with those from 3 Mo mice. The percentage of neurons with spontaneous subthreshold membrane potential oscillation was greater by two-fold in 12 Mo mice. The withdrawal threshold was lower by 22% in 12 Mo mice compared with 3 Mo ones. These results show that in the aged mice, a proportion of DRG neurons is coupled to SGCs, and that the membrane excitability of the DRG neurons increases with age. We propose that augmented neuron-SGC communications via gap junctions are caused by low-grade inflammation associated with aging, and this may contribute to pain behavior.

摘要

衰老对神经系统的影响已有充分的文献记载。然而,大多数关于这个主题的先前研究都是在中枢神经系统中进行的。本研究在小鼠的背根神经节(DRG)上进行,重点研究与年龄相关的 DRG 神经元和卫星胶质细胞(SGC)的变化。使用细胞内电极进行染料注射,以检查神经元和 SGC 之间的缝隙连接介导的偶联,并对神经元进行细胞内电记录。触觉敏感性用冯弗雷毛发进行评估。我们发现,在 8-24 月龄(Mo)的小鼠中,有 3-23%的 DRG 神经元与周围邻近神经元的 SGC 发生染料偶联,而在年轻成年(3 Mo)小鼠中,这一比例为 0%。与 3 Mo 小鼠相比,12 Mo 小鼠感觉神经元产生动作电位的阈值电流明显降低。12 Mo 小鼠中自发亚阈值膜电位振荡的神经元比例增加了一倍。12 Mo 小鼠的撤回阈值比 3 Mo 小鼠低 22%。这些结果表明,在老年小鼠中,一部分 DRG 神经元与 SGC 偶联,并且 DRG 神经元的膜兴奋性随年龄增长而增加。我们提出,与衰老相关的低度炎症导致缝隙连接介导的神经元-SGC 通讯增强,这可能导致疼痛行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f411/9916822/6bcddd95c571/ijms-24-02677-g001.jpg

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