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RESEARCH PRODUCT
Effect of soluble guanylyl cyclase activator and stimulator therapy on nitroglycerin-induced nitrate tolerance in rats
Johannes-peter StaschAlexander JabsThomas JansenYuliya MikhedMichael HausdingSebastian StevenSwenja Kröller-schönPaul StammAndreas DaiberEberhard SchulzMaximilian KoppPhilipp WelschofThomas MünzelMatthias Oelzesubject
MaleHydrocarbons FluorinatedPhysiologyMorpholinesReceptors Cytoplasmic and NuclearVasodilationStimulationPharmacologymedicine.disease_causeBenzoatesNitric oxideNitroglycerinchemistry.chemical_compoundOrgan Culture TechniquesSoluble Guanylyl CyclasemedicineAnimalsPharmacology (medical)Rats WistarEndothelial dysfunctionAortaWhole bloodPharmacologyNitratesActivator (genetics)business.industryNitrotyrosineBiphenyl Compoundsmedicine.diseaseRatsBiphenyl compoundEnzyme ActivationOxidative StressPyrimidineschemistryGuanylate CyclaseMeeting Abstractcardiovascular systemMolecular MedicineSoluble guanylyl cyclasebusinessOxidative stressdescription
Chronic nitroglycerin (GTN) anti-ischemic therapy induces side effects such as nitrate tolerance and endothelial dysfunction. Both phenomena could be based on a desensitization/oxidation of the soluble guanylyl cyclase (sGC). Therefore, the present study aims at investigating the effects of the therapy with the sGC activator BAY 60-2770 and the sGC stimulator BAY 41-8543 on side effects induced by chronic nitroglycerin treatment. Male Wistar rats were treated with nitroglycerin (100mg/kg/d for 3.5days, s.c. in ethanol) and BAY 60-2770 (0.5 or 2.5mg/kg/d) or BAY 41-8543 (1 and 5mg/kg/d) for 6days. Therapy with BAY 60-2770 but not with BAY 41-8543 improved nitroglycerin-triggered endothelial dysfunction and nitrate tolerance, corrected the decrease in aortic nitric oxide levels, improved the cGMP dependent activation of protein kinase I in aortic tissue and reduced vascular, cardiac and whole blood oxidative stress (fluorescence and chemiluminescence assays; 3-nitrotyrosine staining). In contrast to BAY 41-8543, the vasodilator potency of BAY 60-2770 was not impaired in isolated aortic ring segments from nitrate tolerant rats. sGC activator therapy improves partially the adverse effects of nitroglycerin therapy whereas sGC stimulation has only minor beneficial effects pointing to a nitroglycerin-dependent sGC oxidation/inactivation mechanism contributing to nitrate tolerance.
year | journal | country | edition | language |
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2015-08-01 | BMC Pharmacology and Toxicology |