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Voltage-gated sodium channels in nociceptive versus non-nociceptive nodose vagal sensory neurons innervating guinea pig lungs

机译:豚鼠肺部伤害性和非伤害性迷走神经感觉神经元的电压门控钠通道

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摘要

Lung vagal sensory fibres are broadly categorized as C fibres (nociceptors) and A fibres (non-nociceptive; rapidly and slowly adapting low-threshold stretch receptors). These afferent fibre types differ in degree of myelination, conduction velocity, neuropeptide content, sensitivity to chemical and mechanical stimuli, as well as evoked reflex responses. Recent studies in nociceptive fibres of the somatosensory system indicated that the tetrodotoxin-resistant (TTX-R) voltage-gated sodium channels (VGSC) are preferentially expressed in the nociceptive fibres of the somatosensory system (dorsal root ganglia). Whereas TTX-R sodium currents have been documented in lung vagal sensory nerves fibres, a rigorous comparison of their expression in nociceptive versus non-nociceptive vagal sensory neurons has not been carried out. Using multiple approaches including patch clamp electrophysiology, immunohistochemistry, and single-cell gene expression analysis in the guinea pig, we obtained data supporting the hypothesis that the TTX-R sodium currents are similarly distributed between nodose ganglion A-fibres and C-fibres innervating the lung. Moreover, mRNA and immunoreactivity for the TTX-R VGSC molecules NaV1.8 and NaV1.9 were present in nearly all neurons. We conclude that contrary to findings in the somatosensory neurons, TTX-R VGSCs are not preferentially expressed in the nociceptive C-fibre population innervating the lungs.
机译:肺迷走感觉纤维大致分为C纤维(伤害感受器)和A纤维(无伤害感受;快速和缓慢适应的低阈值拉伸感受器)。这些传入纤维的类型在髓鞘化程度,传导速度,神经肽含量,对化学和机械刺激的敏感性以及诱发的反射反应方面有所不同。体感系统伤害感受纤维的最新研究表明,抗河豚毒素(TTX-R)电压门控钠通道(VGSC)在体感系统(背根神经节)的伤害感受纤维中优先表达。尽管已在肺迷走神经感觉神经纤维中记录了TTX-R钠电流,但尚未对它们在伤害性和非伤害性迷走神经感觉神经元中的表达进行严格比较。使用包括豚鼠的膜片钳电生理学,免疫组织化学和单细胞基因表达分析在内的多种方法,我们获得了支持以下假设的数据:TTX-R钠电流在结节神经节A纤维和C纤维支配神经纤维之间相似地分布。肺。此外,几乎所有神经元中都存在TTX-R VGSC分子NaV1.8和NaV1.9的mRNA和免疫反应性。我们得出结论,与体感神经元的发现相反,TTX-R VGSCs在支配肺的伤害性C纤维群体中未优先表达。

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