Specialized Pro-resolving Mediator Improves Vascular Relaxation via Formyl Peptide Receptor-2

Author:

Edwards-Glenn Jonnelle M1,Fontes Milene T2,Waigi Emily W2,Costa Tiago J2,Maiseyeu Andrei1,Webb R Clinton23,McCarthy Cameron G23,Wenceslau Camilla F23ORCID

Affiliation:

1. Cardiovascular Research Institute, Case Western Reserve University School of Medicine , Cleveland, Ohio , USA

2. Cardiovascular Translational Research Center, Department of Cell Biology and Anatomy, University of South Carolina School of Medicine , Columbia, South Carolina , USA

3. Biomedical Engineering Program, College of Engineering and Computing, University of South Carolina , Columbia, South Carolina , USA

Abstract

Abstract BACKGROUND The resolution of inflammation is an active phenomenon important for switching off inflammatory processes once the harmful stimuli are removed and facilitate the return to homeostasis. Specialized pro-resolving mediators (SPMs), such as lipoxin A4, resolvin D1, and resolvin E1, derived from ω-3 or ω-6 polyunsaturated fatty acids, are crucial for the resolution of inflammation. We hypothesized that SPMs are decreased in hypertension which contributes to the acetylcholine-induced contraction in resistance arteries, which are well known to be mediated by leukotrienes and prostaglandins. Moreover, treatment with SPMs will decrease this contraction via formyl peptide receptor-2 (FPR-2) in resistance arteries from spontaneously hypertensive rats (SHR). METHODS AND RESULTS We performed a comprehensive eicosanoid lipid panel analysis, and our data showed for the first time that precursors of SPMs are decreased in SHR, limiting the production of SPMs and resolution of inflammation in vivo. This phenomenon was associated with an increase in lipid peroxidation in resistance arteries. Although SPMs did not abolish acetylcholine-induced contraction, these lipid mediators improved endothelial function in arteries from SHR via FPR-2 activation at nanomolar concentrations. SPMs also buffered TNF-α-induced reactive oxygen species generation in endothelial cells from C57Bl/6 mice. CONCLUSIONS We suggest that FPR-2 and SPMs could be revealed as a new target or therapeutic agent to improve vascular function in arteries from hypertensive rats.

Funder

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Internal Medicine

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