首页> 外文期刊>Arthritis and Rheumatism >Spinal tumor necrosis factor alpha neutralization reduces peripheral inflammation and hyperalgesia and suppresses autonomic responses in experimental arthritis: a role for spinal tumor necrosis factor alpha during induction and maintenance of peripheral inflammation.
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Spinal tumor necrosis factor alpha neutralization reduces peripheral inflammation and hyperalgesia and suppresses autonomic responses in experimental arthritis: a role for spinal tumor necrosis factor alpha during induction and maintenance of peripheral inflammation.

机译:脊髓肿瘤坏死因子α的中和减少了实验性关节炎中的外周炎症和痛觉过敏,并抑制了自主反应:脊髓肿瘤坏死因子α在诱导和维持外周炎症过程中的作用。

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OBJECTIVE: In addition to the sensitization of pain fibers in inflamed tissues, the increased excitability of the spinal cord is an important mechanism of inflammatory pain. Furthermore, spinal neuronal excitability has been suggested to play a role in modulating peripheral inflammation. This study was undertaken to test the hypothesis that spinal actions of the proinflammatory cytokine tumor necrosis factor alpha (TNFalpha) add significantly to both hyperalgesia and maintenance of peripheral inflammation. METHODS: Rats with antigen-induced arthritis (AIA) were treated intrathecally with the TNFalpha-neutralizing compound etanercept continuously during the complete time course of AIA, which was 3 days for the acute phase and 21 days for the chronic phase. During this time, inflammation and pain-related behavior were monitored. Since a role for autonomic control of inflammation was proposed, measures from heart rate time series were obtained in the acute phase. Findings were compared with those in vehicle-treated animals and in animals receiving etanercept intraperitoneally. RESULTS: Spinally administered etanercept acutely reduced pain-related behavior, attenuated both the development and the maintenance of inflammation, and was superior to systemic administration. Parameters indicating autonomic modulation showed a shift toward a sympathetically dominated state in vehicle-treated animals, which was prevented by intrathecal etanercept. CONCLUSION: Our findings indicate that spinal TNFalpha plays an important role in both pain signaling and modulation of peripheral inflammation. Thus, neutralizing this cytokine at the spinal site not only represents a putative therapeutic option for different pain syndromes, but may be directly used to attenuate peripheral inflammation.
机译:目的:除了使发炎组织中的疼痛纤维敏化外,脊髓兴奋性增强也是炎症性疼痛的重要机制。此外,已经表明脊髓神经元兴奋性在调节外周炎症中起作用。进行这项研究以检验以下假说:促炎性细胞因子肿瘤坏死因子α(TNFalpha)的脊柱活动会明显增加痛觉过敏和维持周围炎症。方法:在AIA的整个治疗过程中,持续用TNFα中和化合物etanercept鞘内治疗抗原诱发性关节炎(AIA)大鼠,急性期为3天,慢性期为21天。在这段时间内,监测了炎症和疼痛相关行为。由于提出了自主控制炎症的作用,因此在急性期获得了心率时间序列的测量值。将结果与用赋形剂处理的动物和腹膜内接受依那西普的动物的发现进行比较。结果:旋转给予依那西普可大大减轻疼痛相关行为,减弱炎症的发生和维持,并且优于全身给药。指示自主神经调节的参数显示在媒介物处理的动物中向交感主导的状态转变,这通过鞘内依那西普预防。结论:我们的发现表明,脊髓TNFα在疼痛信号传导和周围炎症调节中起着重要作用。因此,在脊髓部位中和该细胞因子不仅代表了针对不同疼痛综合征的假定治疗选择,而且可以直接用于减轻外周炎症。

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