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首页> 外文期刊>Journal of Pain Research >Melatonin MT2 receptor agonist IIK-7 produces antinociception by modulation of ROS and suppression of spinal microglial activation in neuropathic pain rats
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Melatonin MT2 receptor agonist IIK-7 produces antinociception by modulation of ROS and suppression of spinal microglial activation in neuropathic pain rats

机译:褪黑素MT2受体激动剂IIK-7通过调节ROS并抑制神经性疼痛大鼠的脊髓小胶质细胞活化来产生抗伤害作用

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Background: In recent years, several melatonin (MLT) receptor agonists have been approved by FDA for the treatment of sleep disorders and depression. Very few studies have shed light on their efficacy against neuropathic pain (NP). IIK-7 is an MT-2 agonist known to promote sleep. Whether IIK-7 suppresses NP has not been reported, and the signaling profile is unknown. Objective: To investigate the effect of melatonin type 2 receptor agonist IIK-7 on partial sciatic nerve transection-induced NP in rats and elucidate the underlying molecular mechanisms. Methods: NP was induced by the PSNT in the left leg of adult male Wistar rats. On post-transection day 7, rats were implanted with intrathecal (i.t) catheter connected to an infusion pump and divided in to four groups: sham-operated/vehicle, PSNT/vehicle, PSNT/0.5 μg/hr IIK-7 and PSNT/0.5 μg IIK-7/1 μg 4-p/hr. To test the MT-2 dependence on IIK-7 activity, the animals were implanted with a single i.t catheter and injected MT-2 antagonist 4-Phenyl-2-propionamidotetralin (4-p) 20 mins prior to IIK-7 injection on day 7 after PSNT. The antinociceptive response was measured using a mechanical paw withdrawal threshold. Activation of microglial cells and the expression of NP-associated proteins in the spinal cord dorsal horn was assessed by immunofluorescence assay (IFA) and Western blotting (WB). Reactive oxygen species (ROS) scavenging ability of IIK-7 was evaluated by using bone marrow-derived macrophages (BMDM). Results: Treatment with the MT-2 agonist IIK-7 significantly alleviated PSNT-induced mechanical allodynia and glial activation along with the inhibition of P44/42 MAPK, HMGB-1, STAT3, iNOS and casp-3 proteins. Conclusion: IIK-7 attenuates NP through the suppression of glial activation and suppression of proteins involved in inflammation and apoptosis. MT-2 receptor agonists may establish a promising and unique therapeutic approach for the treatment of NP.
机译:背景:近年来,FDA批准了几种褪黑激素(MLT)受体激动剂用于治疗睡眠障碍和抑郁症。很少有研究揭示其抗神经性疼痛(NP)的功效。 IIK-7是已知可促进睡眠的MT-2激动剂。 IIK-7是否抑制NP尚未见报道,并且信号传导图谱是未知的。目的:探讨褪黑素2型受体激动剂IIK-7对部分坐骨神经横断所致大鼠NP的影响,并阐明其潜在的分子机制。方法:PSNT诱导成年雄性Wistar大鼠左腿产生NP。横切后第7天,将大鼠鞘内导管插入输液泵,并分为四组:假手术/车辆,PSNT /车辆,PSNT / 0.5μg/ hr IIK-7和PSNT / 0.5μgIIK-7 / 1μg4-p / hr。为了测试MT-2对IIK-7活性的依赖性,将动物植入单个it导管,并在一天进行IIK-7注射前20分钟注射MT-2拮抗剂4-苯基-2-丙酰胺基四氢化萘(4-p)。 PSNT之后7。使用机械爪退缩阈值测量镇痛反应。通过免疫荧光测定(IFA)和蛋白质印迹(WB)评估脊髓背角中小胶质细胞的活化和NP相关蛋白的表达。通过使用骨髓衍生的巨噬细胞(BMDM)评估了IIK-7的活性氧(ROS)清除能力。结果:MT-2激动剂IIK-7的治疗显着减轻了PSNT诱导的机械性异常性疼痛和神经胶质激活,同时抑制了P44 / 42 MAPK,HMGB-1,STAT3,iNOS和casp-3蛋白。结论:IIK-7通过抑制神经胶质细胞活化和抑制炎症和凋亡相关蛋白来减弱NP。 MT-2受体激动剂可以为NP的治疗建立一种有前途的独特治疗方法。

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