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https://www.arca.fiocruz.br/handle/icict/45523
INHIBITION OF INTRACELLULAR CA2+ MOBILIZATION AND POTASSIUM CHANNELS ACTIVATION ARE INVOLVED IN THE VASORELAXATION INDUCED BY 7-HYDROXYCOUMARIN
Author
Affilliation
Federal University of Bahia. Laboratory of Cardiovascular Physiology and Pharmacology. Salvador, BA, Brazil / Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Federal University of Bahia. Laboratory of Cardiovascular Physiology and Pharmacology. Salvador, BA, Brazil / Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Federal University of Bahia. Faculty of Pharmacy. Laboratory of Bioinformatics and Molecular Modeling. Salvador, BA, Brazil.
Federal University of Bahia. Faculty of Pharmacy. Laboratory of Bioinformatics and Molecular Modeling. Salvador, BA, Brazil.
Federal University of Paraíba. Laboratory of Pharmaceutical Technology, Department of Physiology and Pathology. João Pessoa, PB, Brazil.
Federal University of Paraíba. Laboratory of Pharmaceutical Technology, Department of Physiology and Pathology. João Pessoa, PB, Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Federal University of Bahia. Laboratory of Cardiovascular Physiology and Pharmacology. Salvador, BA, Brazil / Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Federal University of Bahia. Laboratory of Cardiovascular Physiology and Pharmacology. Salvador, BA, Brazil / Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Federal University of Bahia. Faculty of Pharmacy. Laboratory of Bioinformatics and Molecular Modeling. Salvador, BA, Brazil.
Federal University of Bahia. Faculty of Pharmacy. Laboratory of Bioinformatics and Molecular Modeling. Salvador, BA, Brazil.
Federal University of Paraíba. Laboratory of Pharmaceutical Technology, Department of Physiology and Pathology. João Pessoa, PB, Brazil.
Federal University of Paraíba. Laboratory of Pharmaceutical Technology, Department of Physiology and Pathology. João Pessoa, PB, Brazil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Federal University of Bahia. Laboratory of Cardiovascular Physiology and Pharmacology. Salvador, BA, Brazil / Fundação Oswaldo Cruz. Instituto Gonçalo Moniz. Salvador, BA, Brasil.
Abstract
Coumarins exhibit a wide variety of biological effects, including activities in the cardiovascular system and the aim of this study was to evaluate the vascular therapeutic potential of 7-Hydroxicoumarin (7-HC). The vascular effects induced by 7-HC (0.001 μM-300 μM), were investigated by in vitro approaches using isometric tension measurements in rat superior mesenteric arteries and by in silico assays using Ligand-based analysis. Our results suggest that the vasorelaxant effect of 7-HC seems to rely on potassium channels, notably through large conductance Ca2+-activated K+ (BKCa) channels activation. In fact, 7-HC (300 μM) significantly reduced CaCl2-induced contraction as well as the reduction of intracellular calcium mobilization. However, the relaxation induced by 7-HC was independent of store-operated calcium entry (SOCE). Moreover, in silico analysis suggests that potassium channels have a common binding pocket, where 7-HC may bind and hint that its binding profile is more similar to quinine's than verapamil's. These results are compatible with the inhibition of Ca2+ release from intracellular stores, which is prompted by phenylephrine and caffeine. Taken together, these results demonstrate a therapeutic potential of 7-HC on the cardiovascular system, making it a promising lead compound for the development of drugs useful in the treatment of cardiovascular diseases.
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