School of Physical Education, Jianghan University, Wuhan 430056, China.
Wuhan Institutes of Biomedical Sciences, Jianghan University, Wuhan 430056, China.
Biomed Res Int. 2020 Jul 22;2020:9861459. doi: 10.1155/2020/9861459. eCollection 2020.
The distributions of P2X subtypes during peripheral neuropathic pain conditions and their differential roles are not fully understood. To explore these characteristics, the lumbosacral dorsal root ganglion (DRG) in the chronic constriction injury (CCI) sciatic nerve rat model was studied. Retrograde trace labeling combined with immunofluorescence technology was applied to analyze the distribution of neuropathic nociceptive P2X1-6 receptors. Our results suggest that Fluoro-Gold (FG) retrograde trace labeling is an efficient method for studying lumbosacral DRG neurons in the CCI rat model, especially when the DRG neurons are divided into small, medium, and large subgroups. We found that neuropathic nociceptive lumbosacral DRG neurons (i.e., FG-positive cells) were significantly increased in medium DRG neurons, while they declined in the large DRG neurons in the CCI group. P2X3 receptors were markedly upregulated in medium while P2X2 receptors were significantly decreased in small FG-positive DRG neurons. There were no significant changes in other P2X receptors (including P2X1, P2X4, P2X5, and P2X6). We anticipate that P2X receptors modulate nociceptive sensitivity primarily through P2X3 subtypes that are upregulated in medium neuropathic nociceptive DRG neurons and/or via the downregulation of P2X2 cells in neuropathic nociceptive small DRG neurons.
在周围神经性疼痛状态下,P2X 亚型的分布及其差异作用尚不完全清楚。为了探讨这些特征,本研究以慢性压迫损伤(CCI)坐骨神经大鼠模型中的腰骶背根神经节(DRG)为研究对象。应用逆行追踪标记结合免疫荧光技术分析病理性伤害性 P2X1-6 受体的分布。结果表明,荧光金(FG)逆行追踪标记是研究 CCI 大鼠模型腰骶部 DRG 神经元的有效方法,特别是当 DRG 神经元被分为小、中、大亚群时。我们发现,CCI 组中,病理性伤害性腰骶部 DRG 神经元(即 FG 阳性细胞)在中型 DRG 神经元中显著增加,而在大型 DRG 神经元中减少。P2X3 受体在中型 DRG 神经元中明显上调,而 P2X2 受体在小 FG 阳性 DRG 神经元中显著减少。其他 P2X 受体(包括 P2X1、P2X4、P2X5 和 P2X6)没有明显变化。我们预计 P2X 受体主要通过上调中型病理性伤害性 DRG 神经元中的 P2X3 亚型和/或下调病理性伤害性小 DRG 神经元中的 P2X2 细胞来调节伤害感受敏感性。