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gp130缺陷型伤害感受器的兴奋性降低与电压门控钾电流增加和Kcna4通道上调有关。

Reduced excitability of gp130-deficient nociceptors is associated with increased voltage-gated potassium currents and Kcna4 channel upregulation.

作者信息

Langeslag Michiel, Malsch Philipp, Welling Andrea, Kress Michaela

机构信息

Department of Physiology and Biomedical Physics, Division of Physiology, Medical University of Innsbruck, Fritz-Pregl Strasse 3-I, A-6020, Innsbruck, Austria,

出版信息

Pflugers Arch. 2014 Nov;466(11):2153-65. doi: 10.1007/s00424-014-1443-0. Epub 2014 Jan 25.

Abstract

Neuropathic pain and pain arising from local inflammation are characterized by increased release of inflammatory mediators like interleukin-6 (IL-6) by immune cells. The levels of IL-6 is increased in various painfull conditions and correlates with the severity of thermal and mechanical hypersensitivity. Deletion of the IL-6 signal transducer glycoprotein 130 (gp130) reduces inflammation associated with hypersensitivity to thermal and mechanical stimuli. In this study, we show that nociceptor-specific deletion of gp130 alters excitability parameters that are linked to changes in the potassium conductance. In SNS-gp130(-/-) sensory neurons, the resting membrane potential was reduced. Moreover the repolarization speed of the action potential and afterhypolarization was augmented, however, voltage-gated Na(+) and Ca(2+) current were not obviously altered. The main difference between gp130-deficient and control neurons was a significant increase in the conductance of both delayed rectifier as well as A-type potassium currents. Taqman RT-PCR analysis revealed significantly higher levels of Kcna4 mRNA, encoding A-type Kv1.4 potassium channel, in neuron cultures from SNS-gp130(-/-) versus control mice, which may account for the electrophysiological data. No difference in other voltage-gated ion channel mRNAs was observed. The present data show for the first time increased A-type K(+) currents and expression of voltage-gated potassium channel Kcna4 (Kv1.4) in SNS-gp130(-/-) nociceptors. This suggests that gp130 acts as a break for the expression of potassium channels and important regulator hub for nociceptor excitability.

摘要

神经性疼痛和由局部炎症引起的疼痛的特征是免疫细胞释放炎性介质如白细胞介素 -6(IL -6)增加。在各种疼痛状态下,IL -6水平升高,并且与热和机械超敏反应的严重程度相关。白细胞介素 -6信号转导子糖蛋白130(gp130)的缺失减少了与对热和机械刺激超敏反应相关的炎症。在本研究中,我们表明伤害感受器特异性缺失gp130会改变与钾电导变化相关的兴奋性参数。在SNS - gp130(-/-)感觉神经元中,静息膜电位降低。此外,动作电位和后超极化的复极化速度加快,然而,电压门控钠(+)和钙(2+)电流没有明显改变。gp130缺陷型神经元与对照神经元之间的主要差异是延迟整流钾电流和A型钾电流的电导均显著增加。Taqman RT - PCR分析显示,与对照小鼠相比,来自SNS - gp130(-/-)的神经元培养物中编码A型Kv1.4钾通道的Kcna4 mRNA水平显著更高,这可能解释了电生理数据。未观察到其他电压门控离子通道mRNA的差异。本数据首次显示SNS - gp130(-/-)伤害感受器中A型钾电流增加以及电压门控钾通道Kcna4(Kv1.4)的表达。这表明gp130作为钾通道表达的制动器以及伤害感受器兴奋性的重要调节枢纽发挥作用。

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