Impact of the Potential Antitumor Agent 2-(4-Hydroxyphenyl) Amino-1,4-Naphthoquinone (Q7) on Vasomotion Is Mediated by the Vascular Endothelium, but Not Vascular Smooth Muscle Cell Metabolism

Javier Palacios, Julio Benites, Gareth I. Owen, Pablo Morales, Mario Chiong, Chukwuemeka R. Nwokocha, Adrián Paredes, Fredi Cifuentes

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3 Citations (Scopus)

Abstract

Vasomotion is defined as rhythmic oscillations in arterial diameter that regulate the blood flow and blood pressure. Because antitumor treatment may impair vascular functions and increase the blood pressure, we sought to evaluate whether a new naphthoquinone derivative, postulated as an antitumor agent, manifests adverse effects on vascular function. In this article, we evaluated the toxicity of 2-(4-hydroxyphenyl) amino-1,4-naphthoquinone (Q7) and its effects on vascular vasomotion in 3 models of vascular structure: endothelial cells, aortic ring, and smooth muscle cells. Although showing nontoxic effects, Q7 inhibited the formation of capillary-like structures of the EA.hy926 endothelial cell line grown on Matrigel. In exvivo experiments with aortic rings precontracted with phenylephrine (PE, 10-6 M), Q7 (10-5 M) significantly (P < 0.05) reduced vascular rhythmic contractions induced by the acetylcholine (ACh; 10-7-10-5 M), whereas sodium nitroprusside (a nitric oxide donor; 10-8 M) recovered the vasomotion. Furthermore, Q7 (10-5 M) did not decrease KCl-induced vascular rhythmic contractions in the aortic rings precontracted with BaCl2 (a nonselective K+ channel blocker; 10-3 M). Vascular smooth muscle cells (A7r5) preincubated with Q7 (10-5 M) for 3 hours also demonstrated a reduced glucose uptake. However, the Adenosine Triphosphate content was unaffected, suggesting that the rapid reduction in vasomotion observed in vascular reactivity experiments did not involve cellular metabolism but may be due to faster mechanisms involving endothelial nitric oxide and K+ channels leading to oscillations in intracellular Ca2+. In summary, the naphthoquinone derivative Q7 presents low cytotoxicity yet may alter the endothelial cell response and vasomotion in the absence of changes in smooth muscle cell metabolism.

Original languageEnglish
Pages (from-to)245-252
Number of pages8
JournalJournal of Cardiovascular Pharmacology
Volume77
Issue number2
DOIs
Publication statusPublished - Feb 1 2021

Bibliographical note

Publisher Copyright:
© 2020 Wolters Kluwer Health, Inc. All rights reserved.

Funding

Financial support was provided by FONDECYT 1200610 (J.P.), 1180241 (G.I.O.), Vicerrectoría para Investigación, Innovación y Postgrado de la Universidad Arturo Prat (VRIIP0002-20, VRIIP0006-17, and VRIIP0198-14), and the Network for Extreme Environments Research project to F. Cifuentes and A. Paredes (NEXER, Project ANT1756, Universidad de Antofagasta, Chile). CONICYT FONDAP-15130011 (M.G. and G. I. Owen) and Millennium Institute on Immunology and Immunotherapy IMII P09/016-F (G. I. Owen).

FundersFunder number
Network for Extreme Environments ResearchANT1756
Vicerrectoría para Investigación, Innovación y Postgrado de la Universidad Arturo PratVRIIP0002-20, VRIIP0006-17, VRIIP0198-14
Fondo Nacional de Desarrollo Científico y Tecnológico1200610, 1180241
Universidad de Antofagasta

    ASJC Scopus Subject Areas

    • Pharmacology
    • Cardiology and Cardiovascular Medicine

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