Perillyl Alcohol Promotes Relaxation in Human Umbilical Artery

Author:

de Sena Bastos Carla Mikevely12,Pereira-de-Morais Luis2,de Alencar Silva Andressa2,de Menezes Dantas Débora1,Batista Paulo Ricardo12,Gomes Maria Franciele Lima2,de Araújo Delmondes Gyllyandeson3,de Menezes Irwin Rose Alencar4,da Silva Renata Evaristo Rodrigues12,Barbosa Roseli12

Affiliation:

1. Biological Chemistry Department, Pimenta Campus, Regional University of Cariri, Crato 63105-000, Ceará, Brazil

2. Biological Sciences Department, Physiopharmacology of Excitable Cells Laboratory, Pimenta Campus, Regional University of Cariri, Crato 63105-000, Ceará, Brazil

3. Universidade Regional do Cariri Quimica Biologica Crato Brazil

4. Biological Chemistry Department, Pimenta Campus, Regional University of Cariri, Crato 63105-000, Ceará, Brazil

Abstract

Background: Perillyl alcohol (POH) is a monoterpenoid found in plant essential oils and has been shown to relax murine vessels, but its effect on human vessels remains poorly studied. Objective: The study aimed to characterize the effect of POH on human umbilical arteries (HUA). Methods: Rings of HUA were obtained from uncomplicated patients and suspended in an organ bath for isometric recording. The vasorelaxant effect of POH in HUA was evaluated on basal tone and electromechanical or pharmacomechanical contractions, and possible mechanisms of action were also investigated. Results: POH (1-1000 μM) altered the basal tone of HUA and completely relaxed HUA rings precontracted with KCl (60 mM) or 5-HT (10 μM), obtaining greater potency in the pharmacomechanical pathway (EC50 110.1 μM), suggesting a complex interference in the mobilization of extra- and intracellular Ca2+. POH (1000 μM) inhibited contractions induced by BaCl2 (0.1-30 mM) in a similar way to nifedipine (10 μM), indicating a possible blockade of L-type VOCC. In the presence of potassium channel blockers, tetraethylammonium (1 mM), 4-aminopyridine (1 mM), or glibenclamide (10 μM), an increase in the EC50 value of the POH was observed, suggesting a modulation of the activity of BKCa, KV, and KATP channels. Conclusion: The data from this study suggest that POH modulates Ca2+ and K+ ion channels to induce a relaxant response in HUA.

Publisher

Bentham Science Publishers Ltd.

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