首页> 美国卫生研究院文献>The Journal of Neuroscience >Increased Resurgent Sodium Currents in Nav1.8 Contribute to Nociceptive Sensory Neuron Hyperexcitability Associated with Peripheral Neuropathies
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Increased Resurgent Sodium Currents in Nav1.8 Contribute to Nociceptive Sensory Neuron Hyperexcitability Associated with Peripheral Neuropathies

机译:Nav1.8中增加的中枢钠电流促进与周围神经病变相关的伤害性感觉神经元过度兴奋。

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摘要

Neuropathic pain is a significant public health challenge, yet the underlying mechanisms remain poorly understood. Painful small fiber neuropathy (SFN) may be caused by gain-of-function mutations in Nav1.8, a sodium channel subtype predominantly expressed in peripheral nociceptive neurons. However, it is not clear how Nav1.8 disease mutations induce sensory neuron hyperexcitability. Here we studied two mutations in Nav1.8 associated with hypersensitive sensory neurons: G1662S reported in painful SFN; and T790A, which underlies increased pain behaviors in the Possum transgenic mouse strain. We show that, in male DRG neurons, these mutations, which impair inactivation, significantly increase TTX-resistant resurgent sodium currents mediated by Nav1.8. The G1662S mutation doubled resurgent currents, and the T790A mutation increased them fourfold. These unusual currents are typically evoked during the repolarization phase of action potentials. We show that the T790A mutation greatly enhances DRG neuron excitability by reducing current threshold and increasing firing frequency. Interestingly, the mutation endows DRG neurons with multiple early afterdepolarizations and leads to substantial prolongation of action potential duration. In DRG neurons, siRNA knockdown of sodium channel β4 subunits fails to significantly alter T790A current density but reduces TTX-resistant resurgent currents by 56%. Furthermore, DRG neurons expressing T790A channels exhibited reduced excitability with fewer early afterdepolarizations and narrower action potentials after β4 knockdown. Together, our data demonstrate that open-channel block of TTX-resistant currents, enhanced by gain-of-function mutations in Nav1.8, can make major contributions to the hyperexcitability of nociceptive neurons, likely leading to altered sensory phenotypes including neuropathic pain in SFN.>SIGNIFICANCE STATEMENT This work demonstrates that two disease mutations in the voltage-gated sodium channel Nav1.8 that induce nociceptor hyperexcitability increase resurgent currents. Nav1.8 is crucial for pain sensations. Because resurgent currents are evoked during action potential repolarization, they can be crucial regulators of action potential activity. Our data indicate that increased Nav1.8 resurgent currents in DRG neurons greatly prolong action potential duration and enhance repetitive firing. We propose that Nav1.8 open-channel block is a major factor in Nav1.8-associated pain mechanisms and that targeting the molecular mechanism underlying these unique resurgent currents represents a novel therapeutic target for the treatment of aberrant pain sensations.
机译:神经性疼痛是一项重大的公共卫生挑战,但其潜在机制仍知之甚少。 Nav1.8是主要在周围伤害感受性神经元中表达的一种钠通道亚型,可能是由功能获得性突变Nav1.8引起的。但是,尚不清楚Nav1.8疾病突变如何诱导感觉神经元过度兴奋。在这里,我们研究了与过敏性感觉神经元有关的Nav1.8中的两个突变:疼痛SFN中报道的G1662S; T790A和T790A,在负鼠负鼠基因中增加了疼痛行为。我们显示,在雄性DRG神经元中,这些破坏失活的突变显着增加了Nav1.8介导的TTX抗性中枢钠电流。 G1662S突变使再生电流增加了一倍,而T790A突变使它们的电流增加了四倍。这些异常电流通常是在动作电位的复极阶段诱发的。我们表明,T790A突变通过降低电流阈值和增加放电频率大大增强了DRG神经元的兴奋性。有趣的是,该突变使DRG神经元具有多个早期去极化作用,并导致动作电位持续时间大大延长。在DRG神经元中,敲除钠通道β4亚基的siRNA不能显着改变T790A电流密度,但可使TTX耐药的复苏电流降低56%。此外,表达T790A通道的DRG神经元表现出降低的兴奋性,早期去极化后较少,β4敲低后的动作电位更窄。总之,我们的数据表明,通过Nav1.8的功能获得性突变增强的TTX耐药性电流的开放通道阻滞可以对伤害感受性神经元的过度兴奋做出重大贡献,可能导致感觉表型改变,包括神经痛。 SFN。>意义声明。这项工作表明,电压门控钠通道Nav1.8中的两个引起伤害感受器过度兴奋性的疾病突变会增加复苏电流。 Nav1.8对于疼痛感至关重要。由于在动作电位复极过程中会引起复生电流,因此它们可能是动作电位活动的关键调节器。我们的数据表明,DRG神经元中Nav1.8复活电流的增加极大地延长了动作电位的持续时间并增强了重复发射。我们提出,Nav1.8开放通道阻滞是与Nav1.8相关的疼痛机制的主要因素,针对这些独特的复发电流基础的分子机制代表了异常疼痛感治疗的新型治疗靶点。

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