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河豚毒素降低肠系膜动脉的收缩性,揭示了电压门控钠离子通道在血管张力调节中的作用。

Tetrodotoxin Decreases the Contractility of Mesenteric Arteries, Revealing the Contribution of Voltage-Gated Na Channels in Vascular Tone Regulation.

机构信息

INSERM, CNRS, MITOVASC, Equipe CarME, SFR ICAT, University Angers, 49000 Angers, France.

UMR INSERM 1121, CRBS, Strasbourg University, 67000 Strasbourg, France.

出版信息

Mar Drugs. 2023 Mar 22;21(3):196. doi: 10.3390/md21030196.

Abstract

Tetrodotoxin (TTX) poisoning through the consumption of contaminated fish leads to lethal symptoms, including severe hypotension. This TTX-induced hypotension is likely due to the downfall of peripheral arterial resistance through direct or indirect effects on adrenergic signaling. TTX is a high-affinity blocker of voltage-gated Na (Na) channels. In arteries, Na channels are expressed in sympathetic nerve endings, both in the intima and media. In this present work, we aimed to decipher the role of Na channels in vascular tone using TTX. We first characterized the expression of Na channels in the aorta, a model of conduction arteries, and in mesenteric arteries (MA), a model of resistance arteries, in C57Bl/6J mice, by Western blot, immunochemistry, and absolute RT-qPCR. Our data showed that these channels are expressed in both endothelium and media of aorta and MA, in which and were the most abundant transcripts, suggesting that murine vascular Na channels consist of Na1.2 channel subtype with Naβ1 auxiliary subunit. Using myography, we showed that TTX (1 µM) induced complete vasorelaxation in MA in the presence of veratridine and cocktails of antagonists (prazosin and atropine with or without suramin) that suppressed the effects of neurotransmitter release. In addition, TTX (1 µM) strongly potentiated the flow-mediated dilation response of isolated MA. Altogether, our data showed that TTX blocks Na channels in resistance arteries and consecutively decreases vascular tone. This could explain the drop in total peripheral resistance observed during mammal tetrodotoxications.

摘要

通过食用受污染的鱼类而导致的河豚毒素 (TTX) 中毒会引起致命的症状,包括严重的低血压。这种 TTX 引起的低血压可能是由于外周动脉阻力下降,这是通过对肾上腺素能信号的直接或间接作用造成的。TTX 是电压门控 Na (Na) 通道的高亲和力阻断剂。在动脉中,Na 通道表达在交感神经末梢,无论是在内膜还是中膜。在本研究中,我们旨在使用 TTX 来解析 Na 通道在血管张力中的作用。我们首先通过 Western blot、免疫化学和绝对 RT-qPCR 来描述 C57Bl/6J 小鼠主动脉(传导动脉模型)和肠系膜动脉(MA,阻力动脉模型)中 Na 通道的表达。我们的数据表明,这些通道在内膜和中膜中均表达于主动脉和 MA 中,其中 和 是最丰富的转录本,这表明小鼠血管 Na 通道由 Na1.2 通道亚型和 Naβ1 辅助亚基组成。使用肌动描记术,我们表明 TTX(1µM)在存在藜芦碱和神经递质释放抑制剂鸡尾酒(哌唑嗪和阿托品,有或没有苏拉明)的情况下,可诱导 MA 完全松弛。此外,TTX(1µM)强烈增强了离体 MA 的血流介导的舒张反应。总的来说,我们的数据表明 TTX 阻断了阻力动脉中的 Na 通道,随后降低了血管张力。这可以解释在哺乳动物河豚毒素中毒期间观察到的总外周阻力下降。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1b0/10059581/e73d65ed62c6/marinedrugs-21-00196-g001.jpg

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