Institute of Physiology 1, University Hospital - Friedrich Schiller University Jena, Teichgraben 8, D-07740, Jena, Germany.
Institute of Immunology, University Hospital - Friedrich Schiller University Jena, Leutragraben 3, D-07740, Jena, Germany.
Sci Rep. 2017 Sep 4;7(1):10334. doi: 10.1038/s41598-017-10509-5.
Interleukin-17A (IL-17A) is considered an important pro-inflammatory cytokine but its importance in joint diseases such as rheumatoid arthritis (RA) is unclear. It has also been reported that IL-17A may induce pain but it is unclear whether pro-inflammatory and pro-nociceptive effects are linked. Here we studied in wild type (WT) and IL-17A knockout (IL-17AKO) mice inflammation and hyperalgesia in antigen-induced arthritis (AIA). We found that the severity and time course of AIA were indistinguishable in WT and IL-17AKO mice. Furthermore, the reduction of inflammation by sympathectomy, usually observed in WT mice, was preserved in IL-17AKO mice. Both findings suggest that IL-17A is redundant in AIA pathology. However, in the course of AIA IL-17AKO mice showed less mechanical hyperalgesia than WT mice indicating that IL-17A contributes to pain even if it is not crucial for arthritis pathology. In support for a role of IL-17A and other members of the IL-17 family in the generation of pain we found that sensory neurones in the dorsal root ganglia (DRG) express all IL-17 receptor subtypes. Furthermore, in isolated DRG neurones most IL-17 isoforms increased tetrodotoxin- (TTX-) resistant sodium currents which indicate a role of IL-17 members in inflammation-evoked sensitization of sensory nociceptive neurones.
白细胞介素-17A(IL-17A)被认为是一种重要的促炎细胞因子,但它在类风湿关节炎(RA)等关节疾病中的重要性尚不清楚。也有报道称,IL-17A 可能会引起疼痛,但促炎和促伤害性效应是否相关尚不清楚。在这里,我们在野生型(WT)和白细胞介素-17A 敲除(IL-17AKO)小鼠中研究了抗原诱导关节炎(AIA)中的炎症和痛觉过敏。我们发现,WT 和 IL-17AKO 小鼠的 AIA 严重程度和时间进程没有区别。此外,交感神经切除术通常在 WT 小鼠中观察到的炎症减轻在 IL-17AKO 小鼠中得以保留。这两个发现表明,IL-17A 在 AIA 发病机制中是冗余的。然而,在 AIA 过程中,IL-17AKO 小鼠的机械性痛觉过敏程度低于 WT 小鼠,这表明 IL-17A 即使对关节炎发病机制不是至关重要的,也有助于疼痛。为了支持 IL-17A 和 IL-17 家族的其他成员在产生疼痛中的作用,我们发现背根神经节(DRG)中的感觉神经元表达所有 IL-17 受体亚型。此外,在分离的 DRG 神经元中,大多数 IL-17 同工型增加了河豚毒素(TTX)抗性钠电流,这表明 IL-17 成员在炎症诱发的感觉伤害性神经元敏化中发挥作用。