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首页> 外文期刊>Arthritis and Rheumatism >Analgesic effect of the neuropeptide cortistatin in murine models of arthritic inflammatory pain
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Analgesic effect of the neuropeptide cortistatin in murine models of arthritic inflammatory pain

机译:神经肽皮质抑素在关节炎性炎性疼痛小鼠模型中的镇痛作用

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摘要

Objective To investigate the role of the antiinflammatory neuropeptide cortistatin in chronic pain evoked by joint inflammation. Methods Thermal and mechanical hyperalgesia was evoked in mouse knee joints by intraplantar injection of tumor necrosis factor α and intraarticular infusion of Freund's complete adjuvant, and the analgesic effects of cortistatin, administered centrally, peripherally, and systemically, were assessed. In addition, the effects of cortistatin on the production of nociceptive peptides and the activation of pain signaling were assayed in dorsal root ganglion cultures and in inflammatory pain models. The role of endogenous cortistatin in pain sensitization and perpetuation of chronic inflammatory states was evaluated in cortistatin-deficient mice. Finally, the effect of noxious/inflammatory stimuli in the production of cortistatin by the peripheral nociceptive system was assayed in vitro and in vivo. Results Expression of cortistatin was observed in peptidergic nociceptors of the peripheral nociceptive system, and endogenous cortistatin was found to participate in the tuning of pain sensitization, especially in pathologic inflammatory conditions. Results showed that cortistatin acted both peripherally and centrally to reduce the tactile allodynia and heat hyperalgesia evoked by arthritis and peripheral tissue inflammation in mice, via mechanisms that were independent of its antiinflammatory action. These mechanisms involved direct action on nociceptive neurons and regulation of central sensitization. The analgesic effects of cortistatin in murine arthritic pain were linked to binding of the neuropeptide to somatostatin and ghrelin receptors, activation of the G protein subunit Gαi, impairment of ERK signaling, and decreased production of calcitonin gene-related peptide in primary nociceptors. Conclusion These findings indicate that cortistatin is an antiinflammatory factor with potent analgesic effects that may offer a new approach to pain therapy in pathologic inflammatory states, including osteoarthritis and rheumatoid arthritis.
机译:目的探讨抗炎神经肽皮质抑素在关节炎症引起的慢性疼痛中的作用。方法通过足底注射肿瘤坏死因子α并关节内输注弗氏完全佐剂诱发小鼠膝关节热和机械性痛觉过敏,并评估皮质抑素的镇痛作用(集中,外周和全身给药)。另外,在背根神经节培养物和炎性疼痛模型中测定了皮质抑素对伤害感受肽产生和疼痛信号激活的影响。评估了皮质抑素缺乏症小鼠中内源性皮质抑素在疼痛致敏和慢性炎症状态永存中的作用。最后,在体外和体内测定了有害/炎性刺激在外周伤害感受系统产生皮质抑素中的作用。结果在外周伤害感受系统的肽能伤害感受器中观察到了皮质抑素的表达,并且发现内源性皮质抑素参与了疼痛敏感性的调节,特别是在病理性炎症条件下。结果表明,皮质醇抑素通过独立于其抗炎作用的机制,在外周和中央均起着减轻关节炎和外周组织炎症引起的触觉异常性疼痛和热痛觉过敏的作用。这些机制涉及对伤害性神经元的直接作用和中枢敏化的调节。皮质抑素在鼠关节炎性疼痛中的镇痛作用与神经肽与生长抑素和生长素释放肽受体的结合,G蛋白亚基Gαi的激活,ERK信号转导降低以及降钙素基因相关肽在初级伤害感受器中的产生减少有关。结论这些发现表明,皮质抑素是一种具有有效止痛作用的抗炎因子,可能为病理性炎症状态(包括骨关节炎和类风湿关节炎)的疼痛治疗提供一种新方法。

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