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ID 31984
JaLCDOI
FullText URL
Author
Tikiz, Canan
Utuk, Ozan
Bayturan, Ozgur
Bayindir, Petek
Ekmekci, Cenk
Tikiz, Hakan
Abstract

In this study, we investigated the effects of both 25 and 50 mg daily doses of rofecoxib on the endothelial functions of patients with coronary artery disease (CAD). For this purpose, 34 patients with documented severe CAD and who were under aspirin treatment (300 mg/day) were randomized to receive 4 weeks of treatment with a placebo (n = 10, group I), rofecoxib 25 mg/day (n = 12, group II), and rofecoxib 50 mg/day (n = 12, group III). Brachial artery vasodilator responses were measured in order to evaluate endothelial function. The percentage of change in endothelial-dependent vasodilation in groups I, II, and III were similar at the baseline level and showed no significant change after treatment (6.2+/-3.9% vs. 5.9+/-3.1% and 5.8+/-3.3% vs. 5.6+/-3.8% and 6.1+/-4.5% vs. 5.8+/-4.1%, respectively; P > 0.05). Compared with the baseline, endothelium-independent vasodilatation, as assessed by nitroglycerine (NTG), remained unchanged after the treatment period (11.2+/-6.9% vs. 10.3+/-7.1% and 11.2+/-6.3% vs. 9.9+/-5.1% and 9.5+/-4.9% and 8.8+/-4.6%, respectively; P> 0.05). Treatment with both doses also showed no significant effects on high-sensitivity C-reactive protein (hs-CRP) levels and resting arterial diameters (P > 0.05). In conclusion, 4 weeks of treatment with standard and high doses of rofecoxib showed no significant effects on either endothelial-dependent or independent vasodilator response or plasma hs-CRP levels in patients with severe CAD taking concomitant aspirin.

Keywords
cyclooxy genase-2inhibition
endothelial function
high-sensitivity C-reactive protein
coronary artery disease
Amo Type
Article
Publication Title
Acta Medica Okayama
Published Date
2005-02
Volume
volume59
Issue
issue1
Publisher
Okayama University Medical School
Start Page
11
End Page
17
ISSN
0386-300X
NCID
AA00508441
Content Type
Journal Article
language
English
File Version
publisher
Refereed
True
PubMed ID
Web of Science KeyUT