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Targeted overexpression of Tumor Necrosis Factor-α increases Cyclin-dependent kinase 5 activity and TRPV1-dependent Ca2+ influx in trigeminal neurons

机译:有针对性的肿瘤坏死因子-α的过表达增加三叉神经元中细胞周期蛋白依赖性激酶5活性和TRPV1依赖性Ca2 +内流

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摘要

We reported earlier that TNF-α, a proinflammatory cytokine implicated in many inflammatory disorders causing orofacial pain increases Cdk5 activity, a key kinase involved in brain development and function and recently in pain signaling. To investigate a potential mechanism underlying inflammatory pain in trigeminal ganglia (TG), we engineered a transgenic mouse model (TNFglo) that can conditionally overexpresses TNF-α upon genomic recombination by Cre recombinase. TNFglo mice were bred with Nav1.8-Cre mouse line that expresses the Cre recombinase in sensory neurons to obtain TNF-α:Nav1.8-Cre (TNF-α cTg) mice. Although TNF-α cTg mice appeared normal without any gross phenotype, they displayed a significant increase in TNF-α levels after activation of NFκB signaling in the TG. IL-6 and MCP-1 levels were also increased along with intense immunostaining for Iba1 and GFAP in TG, indicating the presence of infiltrating macrophages and the activation of satellite glial cells. TNF-α cTg mice displayed increased trigeminal Cdk5 activity, and this increase was associated with elevated levels of phospho-T407-TRPV1 and capsaicin-evocated Ca2+ influx in cultured trigeminal neurons. Remarkably, this effect was prevented by roscovitine, an inhibitor of Cdk5, suggesting that TNF-α overexpression induced sensitization of the TRPV1 channel. Furthermore, TNF-α cTg mice displayed more aversive behavior to noxious thermal stimulation (45°C) of the face in an operant pain assessment device as compared with control mice. In summary, TNF-α overexpression in the sensory neurons of TNF-α cTg mice results in inflammatory sensitization and increased Cdk5 activity, therefore this mouse model would be valuable for investigating mechanism involved TNF-α in orofacial pain.
机译:我们之前报道过,TNF-α是一种促炎细胞因子,与许多引起口腔疼痛的炎性疾病有关,可增加Cdk5活性,Cdk5活性是参与大脑发育和功能的关键激酶,最近参与了疼痛信号传导。为了研究潜在的三叉神经节(TG)炎症性疼痛的潜在机制,我们设计了一种转基因小鼠模型(TNF glo ),该模型可以在通过Cre重组酶进行基因组重组后有条件地过表达TNF-α。将TNF glo 小鼠与在感觉神经元中表达Cre重组酶的Nav1.8-Cre小鼠品系进行繁育,以获得TNF-α:Nav1.8-Cre(TNF-αcTg)小鼠。尽管TNF-αcTg小鼠看起来正常,没有任何总体表型,但在TG中激活NFκB信号后,它们显示TNF-α水平显着增加。 IL-6和MCP-1水平也随着TG中Iba1和GFAP的强烈免疫染色而增加,表明存在浸润性巨噬细胞和卫星胶质细胞的激活。 TNF-αcTg小鼠显示出三叉神经Cdk5活性增加,并且这种增加与培养的三叉神经元中磷酸T407-TRPV1和辣椒素引起的Ca 2 + 内流的升高有关。值得注意的是,该作用被Cdk5抑制剂roscovitine阻止,表明TNF-α过度表达引起TRPV1通道的致敏。此外,与对照组相比,TNF-αcTg小鼠在手术疼痛评估装置中对面部的有害热刺激(45°C)表现出更多的厌恶行为。总之,TNF-αcTg小鼠的感觉神经元中的TNF-α过表达导致炎症性敏化和Cdk5活性增加,因此,该小鼠模型对于研究涉及TNF-α的口腔痛机理具有重要价值。

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