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IL‐6 signaling pathway contributes to exercise pressor reflex in rats with femoral artery occlusion in association with Kv4 activity in muscle afferent nerves

机译:IL-6信号通路有助于在股票动脉闭塞的大鼠中与肌肉传神神经中的KV4活性相关的大鼠进行压力

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摘要

Interleukin‐6 (IL‐6) via trans‐signaling pathway plays a role in modifying muscle sensory nerve‐exaggerated exercise pressor reflex in rats with ligated femoral arteries, but the underlying mechanisms are poorly understood. It is known that voltage‐gated potassium channel subfamily member Kv4 channels contribute to the excitabilities of sensory neurons and neuronal signaling transduction. Thus, in this study, we determined that 1) IL‐6 regulates the exaggerated exercise pressor reflex in rats with peripheral artery disease (PAD) induced by femoral artery ligation and 2) Kv4 channels in muscle dorsal root ganglion (DRG) neurons are engaged in the role played by IL‐6 trans‐signaling pathway. We found that the protein levels of IL‐6 and its receptor IL‐6R expression were increased in the DRGs of PAD rats with 3‐day of femoral artery occlusion. Inhibition of muscle afferents’ IL‐6 trans‐signaling pathway (gp130) by intra‐arterial administration of SC144, a gp130 inhibitor, into the hindlimb muscles of PAD rats alleviated blood pressure response to static muscle contraction. On the other hand, we found that 3‐day femoral occlusion decreased amplitude of Kv4 currents in rat muscle DRG neurons. The homo IL‐6/IL‐6Rα fusion protein (H. IL‐6/6Rα), but not IL‐6 alone significantly inhibited Kv4 currents in muscle DRG neurons; and the effect of H. IL‐6/6Rα was largely reverted by SC144. In conclusion, our data suggest that via trans‐signaling pathway upregulated IL‐6 in muscle afferent nerves by ischemic hindlimb muscles inhibits the activity of Kv4 channels and thus likely leads to adjustments of the exercise pressor reflex in PAD.
机译:白细胞介素-6(IL-6)通过反式信号通路在用铰接股动脉大鼠改变肌肉感觉神经夸张的运动压力的作用中起作用,但潜在的机制尚未理解。已知电压门控钾通道亚家族成员Kv4通道有助于感觉神经元和神经元信号转导的兴兴。因此,在本研究中,我们确定了1)IL-6调节由股动脉连接诱导的外周动脉疾病(垫)的大鼠夸张的运动压力反射,并且2)肌肉背根神经节(DRG)神经元的kV4通道啮合在IL-6杂交通道途中发挥的作用。我们发现IL-6及其受体IL-6R表达的蛋白质水平在垫大鼠的DRG中增加了3天的股动脉闭塞。通过动脉内施用SC144,GP130抑制剂的动脉施用肌肉发育的IL-6反式信号通路(GP130)抑制垫大鼠的Hindlimb肌肉中,缓解血压响应静态肌肉收缩。另一方面,我们发现三天股骨闭塞在大鼠肌肉DRG神经元中降低了KV4电流的幅度。 HOMO IL-6 / IL-6Rα融合蛋白(H.IL-6 /6Rα),但单独的IL-6显着抑制肌肉DRG神经元的KV4电流; H. IL-6 /6Rα的效果在很大程度上通过SC144再次恢复。总之,我们的数据表明,通过缺血性后肢肌肉的肌肉传入神经中通过反向信号通路上调的IL-6抑制了KV4通道的活性,因此可能导致垫中运动压力压力的调节。

著录项

  • 期刊名称 Physiological Reports
  • 作者

    Qin Li; Lu Qin; Jianhua Li;

  • 作者单位
  • 年(卷),期 2021(9),13
  • 年度 2021
  • 页码 e14935
  • 总页数 14
  • 原文格式 PDF
  • 正文语种
  • 中图分类 人体生理学;
  • 关键词

    机译:血压;背根神经节;运动压力反射;IL-6;KV4通道;肌肉收缩;外周血疾病;

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