Field stimulation-induced tetrodotoxin-resistant vasorelaxation is mediated by sodium hypochlorite

Author:

Varma Daya R.1234,Xia Zhicheng1234,Ozgoli Mehran1234,Chemtob Sylvain1234,Mulay Shree1234

Affiliation:

1. Department of Pharmacology and Therapeutics, McGill University, 3655 Promenade Sir William Osler, Montreal, QC H3G 1Y6, Canada

2. Department of Chemistry, McGill University, 801 Sherbrooke St. W., Montreal, QC H3A 2K6, Canada

3. Department of Medicine, McGill University, Royal Victoria Hospital, 687 Pine Ave. W., Montreal, QC H3A 1A1, Canada

4. Research Centre, St. Justine Hospital, University of Montreal, 3175 Cote Sainte Catherine, Montreal, QC H3T 1C5, Canada

Abstract

This study was done to determine the mechanism of field stimulation-induced tetrodotoxin (TTX)- and NG-     nitro-l-arginine (LNA)-resistant vasorelaxation. Field stimulation with platinum and carbon, but not with silver, electrodes (30 V, 30 HZ, 2–5 ms pulse width) as well as electrically stimulated salt (0.9% NaCl) solution (ESSS) or Krebs solution caused 100% relaxation of phenylephrine-contracted rat aortic strips, which was TTX and LNA resistant and endothelium independent. ESSS also relaxed other vascular preparations (rabbit aorta and renal artery, dog coronary artery, pig ductus arteriosus, and rat portal vein). The electric current generated hypochlorite (OCl) and H2O2 from the salt solution; however, vasorelaxation was caused by NaOCl and not by H2O2. ESSS and NaOCl caused contraction failure of spontaneously beating right atria of rats and did not affect uterine contractions, vascular cAMP, cGMP, or the pH of the tissue bath. Field stimulation, ESSS, and NaOCl did not relax aortic preparations contracted by 32 mmol/L potassium and their vasorelaxant effects on phenylephrine-contracted rat aortic strips and rings were completely reversed by tetraethylammonium and partially by glibenclamide and iberiotoxin. We conclude that electric pulses generate the oxidant OCl from the salt solution, which causes vasorelaxation by increasing K+ conductance.

Publisher

Canadian Science Publishing

Subject

Physiology (medical),Pharmacology,General Medicine,Physiology

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Myography of isolated blood vessels: Considerations for experimental design and combination with supplementary techniques;Frontiers in Physiology;2023-04-24

2. Carbon Monoxide;Handbook of Toxicology of Chemical Warfare Agents;2015

3. Carbon Monoxide: From Public Health Risk to Painless Killer;Handbook of Toxicology of Chemical Warfare Agents;2009

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