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Nrf2 mediates the antinociceptive activity of dexmedetomidine in an acute inflammatory visceral pain rat model by activating the NF‐κB sensor

机译:NRF2通过激活NF-κB传感器介导抗氧化吡啶啶的抗乳腺活性活性,通过激活NF-κB传感器

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Dexmedetomidine (DEX) is a highly selective α2 adrenoceptor agonist. In this study, we evaluated the antalgic effect of DEX on acetic acid–induced acute inflammatory visceral pain (AIVP) in rats. Additionally, we evaluated the role of Nrf2 signalling in antinociception. We administered acetic acid to male Sprague Dawley rats that were treated with DEX or saline. Twenty rats were randomly classified into the following groups: normal, model, vehicle, or DEX group. Both q‐RT PCR and enzyme‐linked immunosorbent assay data suggested that interleukin 1β (IL‐1β), tumour necrosis factor α, and IL‐6 were upregulated in the spinal cord. Western blotting and q‐RT PCR analyses were performed to detect the protein and mRNA expression levels of Nrf2, Keap1, and HO‐1 in the spinal cord. The DEX group exhibited a significant downregulation in Nrf2/Keap1/HO‐1 signal activation compared with the model group. Furthermore, we used the Nrf2 ‐/‐ knockout AIVP rat model to determine the role of Nrf2 in the antinociceptive effect of DEX. We observed that the Nrf2 knockout blocked the Keap1/Nrf2/HO‐1 signal transduction and partially abated the antinociceptive and the anti‐inflammatory effects of DEX. Moreover, our data also indicated that DEX treatment decreased the activation and expression of nuclear factor (NF)‐κB. However, Nrf2 silencing restored the expression of NF‐κB and its phosphorylated form to physiological levels. In summary, our results suggested that Nrf2 signalling plays an important role in the antinociceptive effect of DEX in the AIVP rat model and that Nrf2 exerts its function by enhancing the activation of the NF‐κB sensor. Significance of the study Currently, using the behavioural parameters is not adequate for the diagnosis of AIVP, and there are no studies that have investigated the role and the mechanism of DEX in ameliorating visceral pain. In this study, we demonstrated that acetic acid stimulation in rats induces AIVP. Additionally, the administration of DEX inhibited the acute inflammation response and decreased the visceromotor reaction (behavioural) to algesia. Further, DEX inhibited the Keap1/Nrf2 pathway, which was activated by acetic acid treatment. We suggest that suppressing the inflammatory response could partially regulate the antinociceptive effect of DEX through Nrf2‐mediated NF‐κB activation associated with AIVP.
机译:右丁络胺(DEX)是一种高精度的α2肾上腺素受体激动剂。在这项研究中,我们评估了DEX对大鼠乙酸诱导的急性炎症内脏疼痛(AIVP)的抗钙效应。此外,我们评估了NRF2信号传导在胰酸中的作用。我们向雄性Sprague Dawley大鼠施用醋酸,含有德克萨或盐水处理。将20只大鼠随机分类为以下组:正常,模型,载体或DEX组。 Q-RT PCR和酶联免疫吸附试验数据都表明,白细胞介素1β(IL-1β),肿瘤坏死因子α和IL-6在脊髓中升高。进行蛋白质印迹和Q-RT PCR分析以检测脊髓中NRF2,KeaP1和HO-1的蛋白质和mRNA表达水平。与模型组相比,DEX组在NRF2 / KeAP1 / HO-1信号激活中表现出显着的下调。此外,我们使用NRF2 - / - 敲除AIVP大鼠模型,以确定NRF2在DEX的抗血质效果中的作用。我们观察到NRF2敲除阻断KeAP1 / NRF2 / HO-1信号转导,并部分减少抗肌肉和抗炎症的抗炎作用。此外,我们的数据还表明DEX治疗降低了核因子(NF)-κB的活化和表达。然而,NRF2沉默恢复了NF-κB的表达及其磷酸化形式至生理水平。总之,我们的结果表明,NRF2信号传导在AIVP大鼠模型中DEX的抗闭合性作用中起重要作用,并且NRF2通过增强NF-κB传感器的激活来施加其功能。目前研究的重要性,使用行为参数不适合诊断AIVP,并且没有研究DEX在改善内脏疼痛中的作用和机制。在这项研究中,我们证明大鼠乙酸刺激诱导AIVP。另外,DEX的给药抑制了急性炎症反应,并降低了对艾尔贝里亚的真菌反应(行为)。此外,DEX抑制了Keap1 / NRF2途径,其被乙酸处理激活。我们建议抑制炎症反应可以通过与AIVP相关的NRF2介导的NF-κB活化部分调节DEX的抗血质作用。

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