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Eur J Pharmacol ; 979: 176822, 2024 Sep 15.
Article in English | MEDLINE | ID: mdl-39047965

ABSTRACT

BACKGROUND & AIMS: The treatment of cardiovascular diseases (CVD) could greatly benefit from using nitric oxide (NO) donors. This study aimed to investigate the mechanisms of action of NONO2P that contribute to the observed responses in the mesenteric artery. The hypothesis was that NONO2P would have similar pharmacological actions to sodium nitroprusside (SNP) and NO. METHODS: Male Wistar rats were euthanized to isolate the superior mesenteric artery for isometric tension recordings. NO levels were measured using the DAF-FM/DA dye, and cyclic guanosine monophosphate (cGMP) levels were determined using a cGMP-ELISA Kit. RESULTS: NONO2P presented a similar maximum efficacy to SNP. The free radical of NO (NO•) scavengers (PTIO; 100 µM and hydroxocobalamin; 30 µM) and nitroxyl anion (NO-) scavenger (L-cysteine; 3 mM) decreased relaxations promoted by NONO2P. The presence of the specific soluble guanylyl cyclase (sGC) inhibitor (ODQ; 10 µM) nearly abolished the vasorelaxation. The cGMP-dependent protein kinase (PKG) inhibition (KT5823; 1 µM) attenuated the NONO2P relaxant effect. The vasorelaxant response was significantly attenuated by blocking inward rectifying K+ channels (Kir), voltage-operated K+ channels (KV), and large conductance Ca2+-activated K+ channels (BKCa). NONO2P-induced relaxation was attenuated by cyclopiazonic acid (10 µM), indicating that sarcoplasmic reticulum Ca2+-ATPase (SERCA) activation is involved in this relaxation. Moreover, NONO2P increased NO levels in endothelial cells and cGMP production. CONCLUSIONS: NONO2P induces vasorelaxation with the same magnitude as SNP, releasing NO• and NO-. Its vasorelaxant effect involves sGC, PKG, K+ channels opening, and SERCA activation, suggesting its potential as a therapeutic option for CVD.


Subject(s)
Cyclic GMP-Dependent Protein Kinases , Cyclic GMP , Nitric Oxide Donors , Nitric Oxide , Potassium Channels , Rats, Wistar , Sarcoplasmic Reticulum Calcium-Transporting ATPases , Signal Transduction , Soluble Guanylyl Cyclase , Vasodilation , Animals , Male , Vasodilation/drug effects , Nitric Oxide Donors/pharmacology , Nitric Oxide/metabolism , Soluble Guanylyl Cyclase/metabolism , Sarcoplasmic Reticulum Calcium-Transporting ATPases/metabolism , Rats , Potassium Channels/metabolism , Cyclic GMP-Dependent Protein Kinases/metabolism , Cyclic GMP/metabolism , Signal Transduction/drug effects , Mesenteric Arteries/drug effects , Mesenteric Arteries/physiology , Guanylate Cyclase/metabolism , Enzyme Activation/drug effects
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