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PMID: 19285984 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Epoxyeicosatrienoic acids limit damage to mitochondrial function following stress in cardiac cells.

Journal of molecular and cellular cardiology ·Vol. 46 ·No. 6 ·2009-06-00 ·Pages 867-75

Katragadda D, Batchu SN, Cho WJ, Chaudhary KR, Falck JR, Seubert JM

Abstract

Epoxyeicosatrienoic acids (EETs) are polyunsaturated fatty acids synthesized from arachidonic acid by CYP2J2 epoxygenase and inactivated by soluble epoxide hydrolase (sEH or Ephx2) to dihydroxyeicosatrienoic acids. Mitochondrial function following ischemic insult is a critical determinant of reperfusion-induced cell death in the myocardium. The objectives of the current study were to investigate the protective role of EETs in mitochondrial function. Mice with the targeted disruption of the Ephx2 gene, cardiomyocyte-specific overexpression of CYP2J2 or perfused with EETs all have improved postischemic LVDP recovery compared to wild-type (WT). Perfusion with the mPTP opener, atractyloside, abolished the improved postischemic functional recovery observed in CYP2J2 Tr, sEH null and EET perfused hearts. Electron micrographs demonstrated WT hearts to have increased mitochondrial fragmentation and T-tubule swelling compared to CYP2J2 Tr hearts following 20 min global ischemia and 20 min reperfusion. Direct effects of EETs on mitochondria were assessed in isolated rat cardiomyocytes and H9c2 cells. Laser-induced loss of mitochondrial membrane potential (DeltaPsi(m)) and mPTP opening was significantly reduced in cells treated with 14, 15-EET (1 microM). The EET protective effect was blocked by the putative EET antagonist 14,15-epoxyeicosa-5(Z)-enoic acid (1 muM, 14, 15-EEZE), paxilline (10 microM, BK(Ca) inhibitor) and 5HD (100 microM, K(ATP) inhibitor). Our studies show that EETs can limit mitochondrial dysfunction following cellular stress via a K(+) channel-dependent mechanism.

MeSH Terms
8,11,14-Eicosatrienoic Acid/pharmacology Animals Antimutagenic Agents/pharmacology Cell Line Cells, Cultured Cobalt/pharmacology Cytochrome P-450 CYP2J2 Cytochrome P-450 Enzyme System/genetics,metabolism Epoxide Hydrolases/genetics,metabolism Fluoresceins/pharmacology Humans Indicators and Reagents/pharmacology Membrane Potential, Mitochondrial/drug effects Mice Mitochondria, Heart/drug effects,metabolism Mitochondrial Membrane Transport Proteins/drug effects,metabolism Mitochondrial Permeability Transition Pore Myocardial Reperfusion Injury/physiopathology Myocytes, Cardiac/drug effects,metabolism Potassium/metabolism Rats Rats, Sprague-Dawley Reactive Oxygen Species/metabolism
Chemicals
Antimutagenic Agents CYP2J2 protein, human Fluoresceins Indicators and Reagents Mitochondrial Membrane Transport Proteins Mitochondrial Permeability Transition Pore Reactive Oxygen Species Cobalt Cytochrome P-450 Enzyme System Cytochrome P-450 CYP2J2 Epoxide Hydrolases cobaltous chloride 8,11,14-Eicosatrienoic Acid Potassium fluorexon
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Katragadda D
Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, 3126 Dentistry/Pharmacy Centre, AB, Canada.
Batchu S N
Cho W J
Chaudhary K R
Falck J R
Seubert J M
Article Info
Journal
Journal of molecular and cellular cardiology
Abbr.
J Mol Cell Cardiol
ISSN
1095-8584
Published
2009-06-00
Epub
2009-00-12
Pages
867-75
Language
English
Region
England
NLM ID
0262322
Subset
IM
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