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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Activation of the neuronal extracellular signal-regulated kinase 2 in the spinal cord dorsal horn is required for complete Freund's adjuvant-induced pain hypersensitivity.
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Activation of the neuronal extracellular signal-regulated kinase 2 in the spinal cord dorsal horn is required for complete Freund's adjuvant-induced pain hypersensitivity.

机译:脊髓背角神经元细胞外信号调节激酶2的激活是完全弗氏佐剂诱导的疼痛超敏反应所必需的。

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Extracellular signal-regulated kinase 1 (ERK1) and ERK2 signaling in the spinal cord dorsal horn (SCDH) has been implicated in injury-induced pain hypersensitivity. Available ERK pathway inhibitors cannot distinguish between ERK1 and ERK2, nor can they differentially target the expression of neuronal or glial ERK1/2. We selectively inhibited the expression of ERK2 in neurons of the adult mouse SCDH by use of an ERK2 small interfering RNA (siRNA) delivered by a neurotropic adenoassociated viral vector. In situ hybridization revealed a siRNA vector-induced decrease in ERK2 mRNA in the ipsilateral SCDH. Immunohistochemistry showed a decreased neuronal phospho-ERK1/2 (pERK1/2), and Western blot analysis revealed that both ERK2 expression and phosphorylation were reduced by the siRNA vector. In contrast, basal ERK1 expression was not affected, although pERK1 was slightly increased. The siRNA vector-induced knockdown of ERK2 expression in the SCDH did not alter the baseline mechanical or thermal paw withdrawal thresholds. Hindpaw intraplantar injection of complete Freund's adjuvant (CFA) produced peripheral inflammation, mechanical allodynia, and thermal hyperalgesia in vector control animals that persisted for at least 96 h. It also caused an increase in SCDH ERK1 and ERK2 levels at 96 h and pERK1 and pERK2 levels at 1 and 96 h. The ERK2 siRNA vector prevented changes in ERK1, ERK2, and pERK2. In addition, the siRNA vector protected the animals from developing mechanical allodynia and thermal hyperalgesia throughout the 96 h after CFA. These findings indicate that ERK2 in the SCDH neurons is critical for the development of inflammatory pain hypersensitivity.
机译:脊髓背角(SCDH)中的细胞外信号调节激酶1(ERK1)和ERK2信号传导与损伤引起的疼痛超敏反应有关。可用的ERK途径抑制剂不能区分ERK1和ERK2,也不能区别地靶向神经元或神经胶质ERK1 / 2的表达。我们通过使用由神经性腺相关病毒载体传递的ERK2小干扰RNA(siRNA),选择性抑制成年小鼠SCDH神经元中ERK2的表达。原位杂交揭示了siRNA载体诱导的同侧SCDH中ERK2 mRNA的减少。免疫组织化学显示神经元磷酸化-ERK1 / 2(pERK1 / 2)减少,Western印迹分析显示,siRNA载体可降低ERK2的表达和磷酸化。相反,尽管pERK1略有增加,但基础ERK1表达并未受到影响。 siRNA载体诱导的SCDH中ERK2表达的敲低不会改变基线机械或热爪退缩阈值。后足足内注射弗氏完全佐剂(CFA)在载体对照动物中产生周围炎症,机械性异常性疼痛和热痛觉过敏,这种现象持续至少96 h。它也导致96小时时SCDH ERK1和ERK2水平升高,以及1和96小时时pERK1和pERK2水平升高。 ERK2 siRNA载体阻止了ERK1,ERK2和pERK2的改变。此外,siRNA载体可保护动物在CFA后整个96小时内免受机械性异常性疼痛和热痛觉过敏的影响。这些发现表明,SCDH神经元中的ERK2对炎症性疼痛超敏反应的发展至关重要。

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