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PMID: 2106399 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Synthesis of lipoxygenase and epoxygenase products of arachidonic acid by normal and stenosed canine coronary arteries.

Circulation research ·Vol. 66 ·No. 3 ·1990-03-00 ·Pages 608-21

Rosolowsky M, Falck JR, Willerson JT, Campbell WB

Abstract

Coronary vascular injury promotes blood cell-vessel wall interactions that influence arachidonic acid metabolism and coronary blood flow patterns. Since lipoxygenase and cytochrome P-450 epoxygenase metabolites of arachidonic acid are synthesized by vascular and inflammatory cells and have a variety of important biological actions, we investigated the metabolism of arachidonic acid by these pathways in normal and stenosed, endothelially injured canine coronary arteries. We found and confirmed by gas chromatography/mass spectrometry that primarily 12- and 15-hydroxyeicosatetraenoic acids (HETEs) are synthesized by both coronary artery segments. Lesser amounts of 11-, 9-, 8-, and 5-HETEs are also produced. 15-Ketoeicosatetraenoic acid is also synthesized. The synthesis of 14C-HETEs is fivefold to 10-fold greater by the stenosed than the normal coronary artery. Specific radioimmunoassays indicated that the stenosed coronary artery synthesized 93 +/- 14 and 1,102 +/- 154 ng/g of tissue of 15- and 12-HETE, respectively, while the normal coronary artery produced 17 +/- 3 and 162 +/- 68 ng/g of tissue of 15- and 12-HETE, respectively. Products comigrating with 14,15-; 11,12-; 8,9-; and 5,6-epoxyeicosatrienoic acids (EETs) and the corresponding dihydroxyeicosatrienoic acids (DHETs) were detected predominantly in stenosed coronary arteries by high-pressure liquid chromatography. The structures of the EETs were confirmed by GC/MS. The EETs and prostaglandin I2 produced endothelium-independent, concentration-related relaxations of dog coronary artery rings. These data indicate that normal and stenotic coronary arteries metabolize arachidonic acid to HETEs, DHETs, and EETs along with prostaglandins; however, the synthesis of these metabolites is greater in the stenosed, endothelially injured vessel. The EETs may be synthesized during the development of cyclic flow variations and counteract the vasoconstrictor effects of thromboxane A2.

MeSH Terms
8,11,14-Eicosatrienoic Acid/analogs & derivatives,metabolism Animals Arachidonic Acid Arachidonic Acids/biosynthesis,metabolism Constriction, Pathologic Coronary Disease/metabolism Coronary Vessels/metabolism Cytochrome P-450 CYP2J2 Cytochrome P-450 Enzyme System Dogs Hydroxyeicosatetraenoic Acids/biosynthesis Lipoxygenase/biosynthesis Oxygenases/biosynthesis Prostaglandins/biosynthesis Reference Values
Chemicals
Arachidonic Acids Hydroxyeicosatetraenoic Acids Prostaglandins Arachidonic Acid 5,6-epoxy-8,11,14-eicosatrienoic acid 15-keto-5,8,11,13-eicosatetraenoic acid Cytochrome P-450 Enzyme System Oxygenases Lipoxygenase Cytochrome P-450 CYP2J2 8,11,14-Eicosatrienoic Acid
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rosolowsky M
Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas 75235-9041.
Falck J R
Willerson J T
Campbell W B
Article Info
Journal
Circulation research
Abbr.
Circ Res
ISSN
0009-7330
Published
1990-03-00
Pages
608-21
Language
English
Region
United States
NLM ID
0047103
Subset
IM
Grants
NIDDK NIH HHS · DK-38226 · United States
NIGMS NIH HHS · GM-27506 · United States
NHLBI NIH HHS · HL-17669 · United States
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