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选择性沉默 Na(V)1.7 可降低迷走感觉神经元的兴奋性和传导性。

Selective silencing of Na(V)1.7 decreases excitability and conduction in vagal sensory neurons.

机构信息

Johns Hopkins School of Medicine, Baltimore, MD, USA.

出版信息

J Physiol. 2011 Dec 1;589(Pt 23):5663-76. doi: 10.1113/jphysiol.2011.215384. Epub 2011 Oct 17.

Abstract

There has been much information learned in recent years about voltage gated sodium channel (Na(V)) subtypes in somatosensory pain signalling, but much less is known about the role of specific sodium channel subtypes in the vagal sensory system. In this study, we developed a technique using adeno-associated viruses (AAVs) to directly introduce shRNA against Na(V)1.7 subtype gene into the vagal sensory ganglia of guinea pigs in vivo. Na(V)1.7 gene expression in nodose ganglia was effectively and selectively reduced without influencing the expression of other sodium channel subtype genes including Na(V)1.1, 1.2, 1.3 1.6, 1.8, or 1.9. Using a whole cell patch-clamp technique, this effect on Na(V)1.7 gene expression coincided with a reduction in tetrodotoxin-sensitive sodium current, a requirement for much larger depolarizing stimulus to initiate action potentials, and reduction in repetitive action potential discharge. Extracellular recordings in the isolated vagus nerve revealed that the conduction of action potentials in sensory A- and C-fibres in many neurons was effectively abolished after Na(V)1.7 shRNA introduction. Moreover, bilateral Na(V)1.7 shRNA injected animals survived for several months and the vagal reflex behaviour, exemplified by citric acid-induced coughing, was significantly suppressed. These data indicate that selectively silencing Na(V)1.7 ion channel expression leads to a substantial decrease in neural excitability and conduction block in vagal afferent nerves.

摘要

近年来,人们对躯体感觉疼痛信号中转录电压门控钠离子通道(Na(V))亚型的了解有了很大进展,但对于特定钠离子通道亚型在迷走感觉系统中的作用知之甚少。在这项研究中,我们开发了一种使用腺相关病毒(AAVs)的技术,可将针对 Na(V)1.7 亚型基因的 shRNA 直接引入豚鼠体内的迷走感觉神经节。Na(V)1.7 基因在结状神经节中的表达被有效且选择性地降低,而不影响其他钠离子通道亚型基因的表达,包括 Na(V)1.1、1.2、1.3、1.6、1.8 或 1.9。使用全细胞膜片钳技术,这种对 Na(V)1.7 基因表达的影响与河豚毒素敏感的钠离子电流减少相吻合,需要更大的去极化刺激才能引发动作电位,并且减少重复动作电位放电。在离体迷走神经中进行的细胞外记录显示,在 Na(V)1.7 shRNA 引入后,许多神经元中的感觉 A 和 C 纤维中的动作电位传导被有效消除。此外,双侧 Na(V)1.7 shRNA 注射动物存活了数月,迷走反射行为,如柠檬酸诱导的咳嗽,显著受到抑制。这些数据表明,选择性沉默 Na(V)1.7 离子通道表达会导致迷走传入神经的神经兴奋性和传导阻滞显著降低。

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