Jin Y. Ro, Youping Zhang, J. Asgar, Huizhong Shou, Man-Kyo Chung, O. Melemedjian, Joyce T. Da Silva, Shou Chen
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引用次数: 0
摘要
本研究探讨了强迫游泳(FSS)诱导的心理物理应激与咀嚼肌炎症相结合对三叉神经节(TG)活性氧(ROS)产生、三叉神经节 TRPA1 上调和机械性痛觉减退的影响。在大鼠模型中,我们证明了 FSS 能增强和延长 CFA 诱导的三叉神经节内 ROS 上调。在治疗后第 4 天和第 28 天,CFA 联合 FSS 组的 ROS 水平超过了纯 CFA 组。与单独使用 CFA 相比,FSS 还能增强 TG 中 TRPA1 的上调,并延长其表达时间。此外,FSS 还显著延长了 CFA 诱导的机械痛感,并持续到第 28 天。PCR 阵列分析显示,在 CFA 和 CFA 结合 FSS 的条件下,氧化应激基因发生了不同的变化,这表明 TG 内的 ROS 调节错综复杂。值得注意的是,Nox4、Hba1、Gpx3 和 Duox1 等基因发生了显著变化,为控制氧化应激和炎性疼痛提供了潜在靶点。Western 印迹和免疫组化证实了 DUOX1 蛋白在 TG 神经元中的上调和定位,表明其在炎症和应激条件下产生 ROS 的过程中发挥作用。这项研究强调了三叉神经系统中心理物理压力、炎症和氧化应激之间复杂的相互作用,为疼痛治疗提供了新的治疗靶点。
Forced swim stress exacerbates inflammation-induced hyperalgesia and oxidative stress in the rat trigeminal ganglia
This study investigates the impact of combining psychophysical stress, induced by forced swim (FSS), with masseter inflammation on reactive oxygen species (ROS) production in trigeminal ganglia (TG), TRPA1 upregulation in TG, and mechanical hyperalgesia. In a rat model, we demonstrate that FSS potentiates and prolongs CFA-induced ROS upregulation within TG. The ROS levels in CFA combined with FSS group surpass those in the CFA-only group on days 4 and 28 post-treatment. FSS also enhances TRPA1 upregulation in TG, with prolonged expression compared to CFA alone. Furthermore, CFA-induced mechanical hyperalgesia is significantly prolonged by FSS, persisting up to day 28. PCR array analyses reveal distinct alterations in oxidative stress genes under CFA and CFA combined with FSS conditions, suggesting an intricate regulation of ROS within TG. Notably, genes like Nox4, Hba1, Gpx3, and Duox1 exhibit significant changes, providing potential targets for managing oxidative stress and inflammatory pain. Western blot and immunohistochemistry confirm DUOX1 protein upregulation and localization in TG neurons, indicating a role in ROS generation under inflammatory and stress conditions. This study underscores the complex interplay between psychophysical stress, inflammation, and oxidative stress in the trigeminal system, offering insights into novel therapeutic targets for pain management.