Literature DB >> 34016841

Unraveling the Role of 12- and 20- HETE in Cardiac Pathophysiology: G-Protein-Coupled Receptors, Pharmacological Inhibitors, and Transgenic Approaches.

Jonathan V Pascale1, Pamela A Lucchesi, Victor Garcia.   

Abstract

ABSTRACT: Arachidonic acid-derived lipid mediators play crucial roles in the development and progression of cardiovascular diseases. Eicosanoid metabolites generated by lipoxygenases and cytochrome P450 enzymes produce several classes of molecules, including the epoxyeicosatrienoic acid (EET) and hydroxyeicosatetraenoic acids (HETE) family of bioactive lipids. In general, the cardioprotective effects of EETs have been documented across a number of cardiac diseases. In contrast, members of the HETE family have been shown to contribute to the pathogenesis of ischemic cardiac disease, maladaptive cardiac hypertrophy, and heart failure. The net effect of 12(S)- and 20-HETE depends upon the relative amounts generated, ratio of HETEs:EETs produced, timing of synthesis, as well as cellular and subcellular mechanisms activated by each respective metabolite. HETEs are synthesized by and affect multiple cell types within the myocardium. Moreover, cytochrome P450-derived and lipoxygenase- derived metabolites have been shown to directly influence cardiac myocyte growth and the regulation of cardiac fibroblasts. The mechanistic data uncovered thus far have employed the use of enzyme inhibitors, HETE antagonists, and the genetic manipulation of lipid-producing enzymes and their respective receptors, all of which influence a complex network of outcomes that complicate data interpretation. This review will summarize and integrate recent findings on the role of 12(S)-/20-HETE in cardiac diseases.
Copyright © 2021 Wolters Kluwer Health, Inc. All rights reserved.

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Year:  2021        PMID: 34016841      PMCID: PMC8523029          DOI: 10.1097/FJC.0000000000001013

Source DB:  PubMed          Journal:  J Cardiovasc Pharmacol        ISSN: 0160-2446            Impact factor:   3.271


  151 in total

1.  Overexpression of 12-lipoxygenase causes cardiac fibroblast cell growth.

Authors:  Y Wen; J Gu; Y Liu; P H Wang; Y Sun; J L Nadler
Journal:  Circ Res       Date:  2001-01-19       Impact factor: 17.367

2.  Cytochrome P450 and arachidonic acid metabolites: role in myocardial ischemia/reperfusion injury revisited.

Authors:  Garrett J Gross; John R Falck; Eric R Gross; Marilyn Isbell; Jeannine Moore; Kasem Nithipatikom
Journal:  Cardiovasc Res       Date:  2005-10-01       Impact factor: 10.787

3.  A specific 15-lipoxygenase inhibitor limits the progression and monocyte-macrophage enrichment of hypercholesterolemia-induced atherosclerosis in the rabbit.

Authors:  T M Bocan; W S Rosebury; S B Mueller; S Kuchera; K Welch; A Daugherty; J A Cornicelli
Journal:  Atherosclerosis       Date:  1998-02       Impact factor: 5.162

Review 4.  Molecular mechanisms and cell signaling of 20-hydroxyeicosatetraenoic acid in vascular pathophysiology.

Authors:  Fan Fan; Ying Ge; Wenshan Lv; Matthew R Elliott; Yoshikazu Muroya; Takashi Hirata; George W Booz; Richard J Roman
Journal:  Front Biosci (Landmark Ed)       Date:  2016-06-01

5.  The lipoxygenase inhibitor 2-phenylmethyl-1-naphthol (DuP 654) is a 12(S)-hydroxyeicosatetraenoic acid receptor antagonist in the human epidermal cell line SCL-II.

Authors:  P Arenberger; A Raap; B Armah; L Kemény; T Ruzicka
Journal:  Skin Pharmacol       Date:  1993

6.  20-Hydroxyeicosatetraenoic acid stimulates nuclear factor-kappaB activation and the production of inflammatory cytokines in human endothelial cells.

Authors:  Tsuneo Ishizuka; Jennifer Cheng; Harpreet Singh; Marco D Vitto; Vijay L Manthati; John R Falck; Michal Laniado-Schwartzman
Journal:  J Pharmacol Exp Ther       Date:  2007-10-18       Impact factor: 4.030

7.  The orphan G-protein-coupled receptor 75 signaling is activated by the chemokine CCL5.

Authors:  Simona Dedoni; Lee A Campbell; Brandon K Harvey; Valeria Avdoshina; Italo Mocchetti
Journal:  J Neurochem       Date:  2018-08-02       Impact factor: 5.372

8.  Modulation of cytochrome P450 gene expression and arachidonic acid metabolism during isoproterenol-induced cardiac hypertrophy in rats.

Authors:  Beshay N M Zordoky; Mona E Aboutabl; Ayman O S El-Kadi
Journal:  Drug Metab Dispos       Date:  2008-08-25       Impact factor: 3.922

9.  Alterations in cytochrome P450-derived arachidonic acid metabolism during pressure overload-induced cardiac hypertrophy.

Authors:  Ahmed A El-Sherbeni; Ayman O S El-Kadi
Journal:  Biochem Pharmacol       Date:  2013-12-01       Impact factor: 5.858

10.  Targeted metabolomic approach in men with carotid plaque.

Authors:  Teresa Auguet; Gemma Aragonès; Marina Colom; Carmen Aguilar; Vicente Martín-Paredero; Núria Canela; Xavier Ruyra; Cristóbal Richart
Journal:  PLoS One       Date:  2018-07-16       Impact factor: 3.240

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  1 in total

Review 1.  Signaling through Free Fatty Acid Receptor 4 Attenuates Cardiometabolic Disease.

Authors:  Timothy D O'Connell; Katherine A Murphy; Naixin Zhang; Sara J Puccini; Chastity L Healy; Brian A Harsch; Michael J Zhang; Gregory C Shearer
Journal:  Physiology (Bethesda)       Date:  2022-08-09
  1 in total

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