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Tempol, a Superoxide Dismutase Mimetic Agent, Inhibits Superoxide Anion-Induced Inflammatory Pain in Mice

机译:Tempol,一种超氧化物歧化酶模拟剂,抑制了小鼠的超氧化物阴离子诱导的炎症疼痛

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The present study evaluated the anti-inflammatory and analgesic effects of the superoxide dismutase mimetic agent tempol in superoxide anion-induced pain and inflammation. Mice were treated intraperitoneally with tempol (10–100 mg/kg) 40 min before the intraplantar injection of a superoxide anion donor, potassium superoxide (KO2, 30 μg). Mechanical hyperalgesia and thermal hyperalgesia, paw edema, and mRNA expression of peripheral and spinal cord mediators involved in inflammatory pain, TNFα, IL-1β, IL-10, COX-2, preproET-1, gp91phox, Nrf2, GFAP, and Iba-1, were evaluated. Peripheral and spinal cord reductions of antioxidant defenses and superoxide anion were also assessed. Tempol reduced KO2-induced mechanical hyperalgesia and thermal hyperalgesia and paw edema. The increased mRNA expression of the evaluated mediators and oxidative stress in the paw skin and spinal cord and increased mRNA expression of glial markers in the spinal cord induced by KO2 were successfully inhibited by tempol. KO2-induced reduction in Nrf2 mRNA expression in paw skin and spinal cord was also reverted by tempol. Corroborating the effect of tempol in the KO2 model, tempol also inhibited carrageenan and CFA inflammatory hyperalgesia. The present study demonstrates that tempol inhibits superoxide anion-induced molecular and behavioral alterations, indicating that tempol deserves further preclinical studies as a promising analgesic and anti-inflammatory molecule for the treatment of inflammatory pain.
机译:评估的超氧的抗炎和镇痛作用本研究氧化物歧化酶模拟剂TEMPOL在超氧阴离子引起的疼痛和炎症。小鼠用TEMPOL腹膜内处理(10-100毫克/千克)一个超氧阴离子供体,超氧化钾(KO2,30微克)的足底注射之前40分钟。机械性痛觉过敏和热痛觉过敏,爪水肿,并且涉及炎症疼痛外周和脊髓介质的mRNA的表达,TNFα,IL-1β,IL-10,COX-2,preproET-1,的gp91phox,Nrf2的,GFAP和Iba- 1,进行了评价。外周和抗氧化防御和超氧阴离子的脊髓的减少也进行了评估。 TEMPOL降低KO2诱导的机械性痛觉过敏和热痛觉过敏和爪水肿。在爪皮肤和脊髓增加了评价介体和氧化应激的mRNA的表达和增加的神经胶质标记物的mRNA的表达在通过KO2诱导脊髓通过TEMPOL成功抑制。在Nrf2的mRNA表达KO2诱导的减少在爪皮肤和脊髓也通过TEMPOL还原。确证在KO2模型TEMPOL的效果,TEMPOL也抑制角叉菜胶和CFA炎性痛觉过敏。本研究表明,TEMPOL抑制超氧阴离子诱导的分子和行为改变,这表明TEMPOL值得进一步的临床前研究为炎性疼痛治疗中的有前途的镇痛和抗炎分子。

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