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Role of Na V 1.7 in postganglionic sympathetic nerve function in human and guinea-pig arteries

机译:Na V 1.7 在人和豚鼠动脉节后交感神经功能中的作用

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Na(V)1.7 plays a crucial role in inducing and conducting action potentials in pain-transducing sensory nociceptor fibres, suggesting that NaV1.7 blockers could be effective non-opioid analgesics. While SCN9A is expressed in both sensory and autonomic neurons, its functional role in the autonomic system remains less established. Our single neuron rt-PCR analysis revealed that 82 of sympathetic neurons isolated from guinea-pig stellate ganglia expressed Na(V)1.7 mRNA, with Na(V)1.3 being the only other tetrodotoxin-sensitive channel expressed in approximately 50 of neurons. We investigated the role of Na(V)1.7 in conducting action potentials in postganglionic sympathetic nerves and in the sympathetic adrenergic contractions of blood vessels using selective Na(V)1.7 inhibitors. Two highly selective Na(V)1.7 blockers, GNE8493 and PF 05089771, significantly inhibited postganglionic compound action potentials by approximately 70 (P < 0.01), with residual activity being blocked by the Na(V)1.3 inhibitor, ICA 121431. Electrical field stimulation (EFS) induced rapid contractions in guinea-pig isolated aorta, pulmonary arteries, and human isolated pulmonary arteries via stimulation of intrinsic nerves, which were inhibited by prazosin or the Na(V)1 blocker tetrodotoxin. Our results demonstrated that blocking Na(V)1.7 with GNE8493, PF 05089771, or ST2262 abolished or strongly inhibited sympathetic adrenergic responses in guinea-pigs and human vascular smooth muscle. These findings support the hypothesis that pharmacologically inhibiting Na(V)1.7 could potentially reduce sympathetic and parasympathetic function in specific vascular beds and airways. image Key points 82 of sympathetic neurons isolated from the stellate ganglion predominantly express Na(V)1.7 mRNA. Na(V)1.7 blockers inhibit action potential conduction in postganglionic sympathetic nerves. Na(V)1.7 blockade substantially inhibits sympathetic nerve-mediated adrenergic contractions in human and guinea-pig blood vessels. Pharmacologically blocking Na(V)1.7 profoundly affects sympathetic and parasympathetic responses in addition to sensory fibres, prompting exploration into the broader physiological consequences of Na(V)1.7 mutations on autonomic nerve activity.
机译:Na(V)1.7 在诱导和传导疼痛传导感觉伤害感受器纤维中的动作电位中起着至关重要的作用,表明 NaV1.7 阻滞剂可能是有效的非阿片类镇痛药。虽然 SCN9A 在感觉神经元和自主神经神经元中均有表达,但其在自主神经系统中的功能作用仍未确定。我们的单神经元 rt-PCR 分析显示,从豚鼠星状神经节分离的交感神经元中有 82% 表达 Na(V)1.7 mRNA,其中 Na(V)1.3 是在大约 50% 的神经元中表达的唯一其他河豚毒素敏感通道。我们使用选择性 Na(V)1.7 抑制剂研究了 Na(V)1.7 在节后交感神经传导动作电位和血管交感肾上腺素能收缩中的作用。两种高选择性 Na(V)1.7 阻滞剂 GNE8493 和 PF 05089771 显着抑制节后化合物动作电位约 70% (P < 0.01),残留活性被 Na(V)1.3 抑制剂 ICA 121431阻断。电场刺激 (EFS) 通过刺激内在神经诱导豚鼠离体主动脉、肺动脉和人离体肺动脉的快速收缩,这些神经被哌唑嗪或 Na(V)1 阻滞剂河豚毒素抑制。我们的结果表明,用 GNE8493、 PF 05089771 或 ST2262 阻断 Na (V) 1.7 可消除或强烈抑制豚鼠和人血管平滑肌的交感神经肾上腺素能反应。这些发现支持药理学抑制 Na(V)1.7 可能会降低特定血管床和气道中的交感神经和副交感神经功能的假设。image 要点 从星状神经节分离的 82% 的交感神经元主要表达 Na(V)1.7 mRNA。Na(V)1.7 阻滞剂抑制节后交感神经的动作电位传导。Na(V)1.7 阻断显着抑制人和豚鼠血管中交感神经介导的肾上腺素能收缩。除了感觉纤维外,药理学阻断 Na(V)1.7 还严重影响交感神经和副交感神经反应,促使探索 Na(V)1.7 突变对自主神经活动的更广泛生理影响。

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