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PMID: 16150654 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Cytochrome p450 2C inhibition reduces post-ischemic vascular dysfunction.

Vascular pharmacology ·Vol. 43 ·No. 4 ·2005-10-00 ·Pages 213-9

Hunter AL, Bai N, Laher I, Granville DJ

Abstract

Cytochrome p450 (CYP) inhibitors provide protection against myocardial infarction following both global and focal cardiac ischemia and reperfusion (I/R). We hypothesized that sulfaphenazole, an inhibitor of CYP2C6 and 9, also attenuates post-ischemic endothelial dysfunction by reducing CYP-mediated superoxide generation (which scavenges nitric oxide (NO)), thereby restoring NO bioavailability and vascular tone. Rat hearts were perfused in the Langendorff mode for 20 min in the presence, or absence, of sulfaphenazole and then subjected to 30 min global no-flow ischemia followed by 15 min reperfusion. Septal coronary resistance arteries were isolated and mounted on glass cannulae for measurements of luminal diameter. Preconstricted arteries were exposed to acetylcholine to elicit endothelium-dependent, NO-mediated vasodilation. Acetylcholine caused near maximal dilation in control tissues not subjected to I/R. Following I/R, endothelium-dependent vasodilation was reduced. Pretreatment with sulfaphenazole restored endothelial sensitivity to acetylcholine. Vasoresponsiveness to endothelium-independent vasodilators, sodium nitroprusside and isoproterenol, were also reduced following I/R. However, sensitivity to endothelium-independent vasodilators was not restored by pretreatment with sulfaphenazole. I/R-induced superoxide production was assessed by dihydroethidium staining of flash frozen hearts. Sulfaphenazole treatment significantly reduced superoxide production in arterial walls following I/R injury. We conclude that sulfaphenazole restores post-ischemic endothelium-dependent, NO-mediated vasodilation by reducing superoxide production, suggesting that CYP2C9 plays a key role in post-ischemic vascular dysfunction.

MeSH Terms
Animals Cytochrome P-450 Enzyme Inhibitors Cytochrome P-450 Enzyme System Cytochrome P450 Family 2 Endothelium, Vascular/drug effects,metabolism Enzyme Inhibitors/pharmacology Ethidium/analogs & derivatives Fluorescent Dyes Heart/drug effects In Vitro Techniques Ischemia/complications Male Muscle, Smooth, Vascular/drug effects Nitric Oxide/metabolism Nitric Oxide Synthase Type III/metabolism Rats Rats, Sprague-Dawley Reactive Oxygen Species/metabolism Steroid 21-Hydroxylase/antagonists & inhibitors Sulfaphenazole/pharmacology Vascular Diseases/etiology,prevention & control
Chemicals
Cytochrome P-450 Enzyme Inhibitors Enzyme Inhibitors Fluorescent Dyes Reactive Oxygen Species Sulfaphenazole dihydroethidium Nitric Oxide Cytochrome P-450 Enzyme System Nitric Oxide Synthase Type III CYP2C9 protein, rat Cyp2c6v1 protein, rat Cytochrome P450 Family 2 Steroid 21-Hydroxylase Ethidium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Hunter Arwen L
The James Hogg iCAPTURE Centre for Cardiovascular and Pulmonary Research, Room 166 Burrard Building, St. Paul's Hospital, University of British Columbia, 1081 Burrard St., Vancouver, British Columbia, Canada, V6Z 1Y6.
Bai Ni
Laher Ismail
Granville David J
Article Info
Journal
Vascular pharmacology
Abbr.
Vascul Pharmacol
ISSN
1537-1891
Published
2005-10-00
Epub
2005-00-08
Pages
213-9
Language
English
Region
United States
NLM ID
101130615
Subset
IM
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