Yoo Sungjae, Han Shanshu, Park Young Shin, Lee Jang-Hern, Oh Uhtaek, Hwang Sun Wook
Korea University Graduate School of Medicine, Seoul, Korea.
Mol Cells. 2009 Apr 30;27(4):417-22. doi: 10.1007/s10059-009-0059-2. Epub 2009 Apr 13.
Lipoxygenase (LO) metabolites are generated in inflamed tissues. However, it is unclear whether the inhibition of the LO activity regulates the expression of c-Fos protein, a pain marker in the spinal cord. Here we used a carrageenan-induced inflammation model to examine the role of LO in the development of c-Fos expression. Intradermally injected carrageenan caused elevated number of cells exhibiting Fos-like immunoreactivity (Fos-LI) in the spinal dorsal horn, and decreased the thermal and mechanical threshold in Hargreaves and von Frey tests. Pretreatment with an inhibitor of phospholipase A2, that generates the LO substrate, prior to the carrageenan injection significantly reduced the number of Fos-(+) cells. A general LO inhibitor NDGA, a 5-LO inhibitor AA-861 and a 12-LO inhibitor baicalein also exhibited the similar effects. Moreover, the LO inhibitors suppressed carrageenan-induced thermal and mechanical hyperalgesic behaviors, which inidcates that the changes in Fos expression correlates with those in the nociceptive behaviors in the inflamed rats. LO products are endogenous TRPV1 activators and pretreatment with BCTC, a TRPV1 antagonist inhibited the thermal but not the mechanical hypersensitivity. Overall, our results from the Fos-LI and behavior tests suggest that LO products released from inflamed tissues contribute to nociception during carrageenan-induced inflammation, indicating that the LO pathway is a possible target for modulating inflammatory pain.
脂氧合酶(LO)代谢产物在炎症组织中产生。然而,尚不清楚抑制LO活性是否会调节c-Fos蛋白的表达,c-Fos蛋白是脊髓中的一种疼痛标志物。在此,我们使用角叉菜胶诱导的炎症模型来研究LO在c-Fos表达发展中的作用。皮内注射角叉菜胶导致脊髓背角中表现出Fos样免疫反应性(Fos-LI)的细胞数量增加,并降低了热辐射甩尾试验和von Frey试验中的热阈值和机械阈值。在注射角叉菜胶之前,用产生LO底物的磷脂酶A2抑制剂进行预处理可显著减少Fos阳性细胞的数量。一种通用的LO抑制剂NDGA、一种5-LO抑制剂AA-861和一种12-LO抑制剂黄芩苷也表现出类似的效果。此外,LO抑制剂可抑制角叉菜胶诱导的热和机械性痛觉过敏行为,这表明Fos表达的变化与炎症大鼠的伤害性感受行为的变化相关。LO产物是内源性TRPV1激活剂,用TRPV1拮抗剂BCTC进行预处理可抑制热超敏反应,但不能抑制机械超敏反应。总体而言,我们从Fos-LI和行为测试中得到的结果表明,炎症组织释放的LO产物在角叉菜胶诱导的炎症过程中促进伤害感受,这表明LO途径可能是调节炎性疼痛的一个靶点。