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Nav1.7:室旁核大细胞神经分泌神经元免疫反应性的应激变化。

NaV1.7: stress-induced changes in immunoreactivity within magnocellular neurosecretory neurons of the supraoptic nucleus.

机构信息

Department of Neurology, Yale University School of Medicine, New Haven, CT 06510, USA.

出版信息

Mol Pain. 2013 Aug 8;9:39. doi: 10.1186/1744-8069-9-39.

Abstract

BACKGROUND

NaV1.7 is preferentially expressed, at relatively high levels, in peripheral neurons, and is often referred to as a "peripheral" sodium channel, and NaV1.7-specific blockers are under study as potential pain therapeutics which might be expected to have minimal CNS side effects. However, occasional reports of patients with NaV1.7 gain-of-function mutations and apparent hypothalamic dysfunction have appeared. The two sodium channels previously studied within the rat hypothalamic supraoptic nucleus, NaV1.2 and NaV1.6, display up-regulated expression in response to osmotic stress.

RESULTS

Here we show that NaV1.7 is present within vasopressin-producing neurons and oxytocin-producing neurons within the rat hypothalamus, and demonstrate that the level of Nav1.7 immunoreactivity is increased in these cells in response to osmotic stress.

CONCLUSIONS

NaV1.7 is present within neurosecretory neurons of rat supraoptic nucleus, where the level of immunoreactivity is dynamic, increasing in response to osmotic stress. Whether NaV1.7 levels are up-regulated within the human hypothalamus in response to environmental factors or stress, and whether NaV1.7 plays a functional role in human hypothalamus, is not yet known. Until these questions are resolved, the present findings suggest the need for careful assessment of hypothalamic function in patients with NaV1.7 mutations, especially when subjected to stress, and for monitoring of hypothalamic function as NaV1.7 blocking agents are studied.

摘要

背景

NaV1.7 在周围神经元中高表达,通常被称为“外周”钠离子通道,NaV1.7 特异性阻滞剂正在被研究作为潜在的疼痛治疗药物,预计其对中枢神经系统的副作用最小。然而,偶尔有报道称,具有 NaV1.7 功能获得性突变和明显下丘脑功能障碍的患者出现。先前在大鼠下丘脑视上核中研究的两种钠离子通道,NaV1.2 和 NaV1.6,在应对渗透胁迫时表现出上调表达。

结果

在这里,我们表明 NaV1.7 存在于大鼠下丘脑的加压素产生神经元和催产素产生神经元中,并证明 Nav1.7 免疫反应性水平在这些细胞中因渗透胁迫而增加。

结论

NaV1.7 存在于大鼠视上核的神经分泌神经元中,其免疫反应性水平是动态的,会因渗透胁迫而增加。NaV1.7 的水平是否会因环境因素或应激而在人类下丘脑中上调,以及 NaV1.7 是否在人类下丘脑中发挥功能作用,目前尚不清楚。在这些问题得到解决之前,本研究结果表明需要仔细评估具有 NaV1.7 突变患者的下丘脑功能,尤其是在应激时,并且需要监测下丘脑功能,因为正在研究 NaV1.7 阻断剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad0a/3750570/825ad0e82c1b/1744-8069-9-39-1.jpg

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