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首页> 外文期刊>The Journal of Physiology >Different role of TTX‐sensitive voltage‐gated sodium channel (Na V V 1) subtypes in action potential initiation and conduction in vagal airway nociceptors
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Different role of TTX‐sensitive voltage‐gated sodium channel (Na V V 1) subtypes in action potential initiation and conduction in vagal airway nociceptors

机译:TTX敏感电压门控钠通道(NA V V 1)亚型在迷走气道伤害者中的作用潜在启动和传导中不同的作用

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Key points The action potential initiation in the nerve terminals and its subsequent conduction along the axons of afferent nerves are not necessarily dependent on the same voltage‐gated sodium channel (Na V 1) subunits. The action potential initiation in jugular C‐fibres within airway tissues is not blocked by TTX; nonetheless, conduction of action potentials along the vagal axons of these nerves is often dependent on TTX‐sensitive channels. This is not the case for nodose airway Aδ‐fibres and C‐fibres, where both action potential initiation and conduction is abolished by TTX or selective Na V 1.7 blockers. The difference between the initiation of action potentials within the airways vs . conduction along the axons should be considered when developing Na V 1 blocking drugs for topical application to the respiratory tract. Abstract The action potential (AP) initiation in the nerve terminals and its subsequent AP conduction along the axons do not necessarily depend on the same subtypes of voltage‐gated sodium channels (Na V 1s). We evaluated the role of TTX‐sensitive and TTX‐resistant Na V 1s in vagal afferent nociceptor nerves derived from jugular and nodose ganglia innervating the respiratory system. Single cell RT‐PCR was performed on vagal afferent neurons retrogradely labelled from the guinea pig trachea. Almost all of the jugular neurons expressed the TTX‐sensitive channel Na V 1.7 along with TTX‐resistant Na V 1.8 and Na V 1.9. Tracheal nodose neurons also expressed Na V 1.7 but, less frequently, Na V 1.8 and Na V 1.9. Na V 1.6 were expressed in ~40% of the jugular and 25% of nodose tracheal neurons. Other Na V 1 α subunits were only rarely expressed. Single fibre recordings were made from the vagal nodose and jugular nerve fibres innervating the trachea or lung in the isolated perfused vagally‐innervated preparations that allowed for selective drug delivery to the nerve terminal compartment (AP initiation) or to the desheathed vagus nerve (AP conduction). AP initiation in jugular C‐fibres was unaffected by TTX, although it was inhibited by Na V 1.8 blocker (PF‐01247324) and abolished by combination of TTX and PF‐01247324. However, AP conduction in the majority of jugular C‐fibres was abolished by TTX. By contrast, both AP initiation and conduction in nodose nociceptors was abolished by TTX or selective Na V 1.7 blockers. Distinction between the effect of a drug with respect to inhibiting AP in the nerve terminals within the airways vs . at conduction sites along the vagus nerve is relevant to therapeutic strategies involving inhaled Na V 1 blocking drugs.
机译:键点神经终端中的动作电位发起及其随后沿着传入神经轴突的导通不一定依赖于相同的电压门控钠通道(Na V 1)亚基。气道组织内的颈纤维中的动作潜在发起不会被TTX阻塞;尽管如此,沿着这些神经的迷进轴突的动作电位传导通常依赖于TTX敏感的通道。对于核糖气道Aδ - 纤维和C纤维的情况并非如此,其中Action潜在启动和导通被TTX或选择性Na V 1.7阻断剂被消除。气道内动作电位启动之间的差异。在开发Na V 1阻断药物中,应考虑轴突的传导,用于呼吸道的局部施用。摘要沿着轴突的神经终端和其随后的AP传导的动作电位(AP)引发不一定取决于电压门控钠通道(NA V 1s)的相同亚型。我们评估了TTX敏感性和TTX抗性Na V 1s在漫游术中源自颈静脉和核糖神经节的阴道传入伤害症神经中的作用。在从豚鼠气管逆行地标记的缩小传入神经元上进行单细胞RT-PCR。几乎所有颈颈神经元都表达了TTX敏感的通道Na V 1.7以及TTX抗性Na V 1.8和Na V 1.9。气管亮度神经元也表达了Na V 1.7,但不太频繁,Na V 1.8和Na V 1.9。 Na V 1.6在颈颈〜40%的〜40%中表达,25%的核糖气管神经元。其他NA V1α亚基仅很少表达。单纤维记录是由阴道核糖和颈颈纤维的分离的灌注型缩小后视液中的制剂中的凹凸或颈肠纤维制成,使得选择性药物递送至神经末端室(AP发起)或Desheathed迷走神经(AP传导)。颈纤维中的AP引发不受TTX的影响,尽管通过Na V 1.8阻断剂(PF-01247324)抑制并通过TTX和PF-01247324的组合废除。然而,通过TTX消除了大多数颈纤维中的AP传导。相比之下,通过TTX或选择性Na V 1.7阻断剂废除了核糖伤虫的AP引发和传导。在气道Vs内神经终端中抑制AP的抑制剂的影响区分。沿着迷走神经的传导地点与涉及吸入Na V 1阻断药物的治疗策略相关。

著录项

  • 来源
    《The Journal of Physiology》 |2018年第8期|共14页
  • 作者单位

    Department of MedicineThe Johns Hopkins University School of MedicineBaltimore MD USA;

    Department of MedicineThe Johns Hopkins University School of MedicineBaltimore MD USA;

    Department of MedicineThe Johns Hopkins University School of MedicineBaltimore MD USA;

    Department of MedicineThe Johns Hopkins University School of MedicineBaltimore MD USA;

    Department of Pharmacology Biomedical Center Martin Jessenius Faculty of Medicine in;

    Department of MedicineThe Johns Hopkins University School of MedicineBaltimore MD USA;

    Department of MedicineThe Johns Hopkins University School of MedicineBaltimore MD USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    Vagus nerve; voltage‐gated sodium channels; Airways; C fibre;

    机译:迷走神经;电压门控钠通道;气道;C纤维;

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