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首页> 外文期刊>Molecular pain >Voltage-dependent sodium (Na V ) channels in group IV sensory afferents
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Voltage-dependent sodium (Na V ) channels in group IV sensory afferents

机译:IV组感觉传入中电压依赖性钠(Na V)通道

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摘要

Patients with intermittent claudication suffer from both muscle pain and an exacerbated exercise pressor reflex. Excitability of the group III and group IV afferent fibers mediating these functions is controlled in part by voltage-dependent sodium (NaV) channels. We previously found tetrodotoxin-resistant NaV1.8 channels to be the primary type in muscle afferent somata. However, action potentials in group III and IV afferent axons are blocked by TTX, supporting a minimal role of NaV1.8 channels. To address these apparent differences in NaV channel expression between axon and soma, we used immunohistochemistry to identify the NaV channels expressed in group IV axons within the gastrocnemius muscle and the dorsal root ganglia sections. Positive labeling by an antibody against the neurofilament protein peripherin was used to identify group IV neurons and axons. We show that >67% of group IV fibers express NaV1.8, NaV1.6, or NaV1.7. Interestingly, expression of NaV1.8 channels in group IV somata was significantly higher than in the fibers, whereas there were no significant differences for either NaV1.6 or NaV1.7. When combined with previous work, our results suggest that NaV1.8 channels are expressed in most group IV axons, but that, under normal conditions, NaV1.6 and/or NaV1.7 play a more important role in action potential generation to signal muscle pain and the exercise pressor reflex.
机译:间歇性lau行的患者同时患有肌肉疼痛和运动压强反射加重。介导这些功能的III和IV组传入纤维的兴奋性部分受电压依赖性钠(Na V )通道的控制。我们以前发现抗河豚毒素的Na 1.8通道是肌肉传入躯体的主要类型。然而,III和IV组传入轴突的动作电位被TTX阻断,支持了Na V 1.8通道的最小作用。为了解决轴突和躯体之间Na V 通道表达的这些明显差异,我们使用免疫组化方法鉴定了腓肠肌和背侧IV组轴突中表达的Na V 通道。根神经节。通过针对神经丝蛋白外围蛋白的抗体的阳性标记被用于鉴定IV组神经元和轴突。我们发现> 67%的IV组纤维表达Na V 1.8,Na V 1.6或Na V 1.7。有趣的是,IV组躯体中Na V 1.8通道的表达显着高于纤维,而Na V 1.6或Na 则无显着差异。 V 1.7。与以前的工作结合时,我们的结果表明,Na V 1.8通道在大多数IV组轴突中都有表达,但是在正常情况下,Na V 1.6和/或Na V 1.7在动作电位的产生中起着更重要的作用,以信号通知肌肉疼痛和运动加压反射。

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