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Over-Expression of TRESK K+ Channels Reduces the Excitability of Trigeminal Ganglion Nociceptors

机译:TRESK K +通道的过表达降低了三叉神经节伤害感受器的兴奋性。

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摘要

TWIK-related spinal cord K+ (TRESK) channel is abundantly expressed in trigeminal ganglion (TG) and dorsal root ganglion neurons and is one of the major background K+ channels in primary afferent neurons. Mutations in TRESK channels are associated with familial and sporadic migraine. In rats, both chronic nerve injury and inflammation alter the expression level of TRESK mRNA. Functional studies indicate that reduction of endogenous TRESK channel activity results in hyper-excitation of primary afferent neurons, suggesting that TRESK is a potential target for the development of new analgesics. However, whether and how enhancing TRESK channel activity would decrease the excitability of primary afferent neurons has not been directly tested. Here, we over-expressed TRESK subunits in cultured mouse TG neurons by lipofectamine-mediated transfection and investigated how this altered the membrane properties and the excitability of the small-diameter TG population. To account for the heterogeneity of neurons, we further divided small TG neurons into two groups, based on their ability to bind to fluorescently-labeled isolectin B (IB4). The transfected TG neurons showed a 2-fold increase in the level of TRESK proteins. This was accompanied by a significant increase in the fraction of lamotrigine-sensitive persistent K+ currents as well as the size of total background K+ currents. Consequently, both IB4-positive and IB4-negative TG neurons over-expressing TRESK subunits exhibited a lower input resistance and a 2-fold increase in the current threshold for action potential initiation. IB4-negative TG neurons over-expressing TRESK subunits also showed a significant reduction of the spike frequency in response to supra-threshold stimuli. Importantly, an increase in TRESK channel activity effectively inhibited capsaicin-evoked spikes in TG neurons. Taken together, our results suggest that potent and specific TRESK channel openers likely would reduce the excitability of primary afferent neurons and therefore are potential therapeutics for the treatment of migraine and other chronic pain symptoms.
机译:TWIK相关的脊髓K + (TRESK)通道在三叉神经节(TG)和背根神经节神经元中大量表达,并且是TIK的主要背景K + 通道之一原发传入神经元。 TRESK通道的突变与家族性和散发性偏头痛有关。在大鼠中,慢性神经损伤和炎症都会改变TRESK mRNA的表达水平。功能研究表明,内源性TRESK通道活性的降低会导致原发传入神经元的过度兴奋,这表明TRESK是开发新镇痛药的潜在目标。但是,尚未直接测试增强TRESK通道活性是否以及如何降低初级传入神经元的兴奋性。在这里,我们通过脂质转染胺介导的转染,在培养的小鼠TG神经元中过表达TRESK亚基,并研究了这如何改变小直径TG群体的膜特性和兴奋性。为了说明神经元的异质性,我们基于小TG神经元与荧光标记的异凝集素B(IB4)结合的能力,将它们进一步分为两组。转染的TG神经元显示TRESK蛋白水平增加了2倍。这伴随着对拉莫三嗪敏感的持续K + 电流的比例以及总背景K + 电流的大小显着增加。因此,过表达TRESK亚基的IB4阳性和IB4阴性的TG神经元均显示出较低的输入电阻,并且动作电位启动的电流阈值增加了2倍。 IB4阴性的TG神经元过度表达TRESK亚基也显示出响应超阈值刺激的突波频率显着降低。重要的是,TRESK通道活性的增加可有效抑制TG神经元中辣椒素引起的峰值。两者合计,我们的结果表明强效和特定的TRESK通道开放剂可能会降低原发传入神经元的兴奋性,因此是治疗偏头痛和其他慢性疼痛症状的潜在疗法。

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  • 作者

    Zhaohua Guo; Yu-Qing Cao;

  • 作者单位
  • 年(卷),期 -1(9),1
  • 年度 -1
  • 页码 e87029
  • 总页数 13
  • 原文格式 PDF
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