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  4. Effect of Acute Exercise on the Change of Lipid Profiles and Peroxides, Prostanoids and Platelet Activation in Hypercholesterolemic Patients Before and After Treatment
 
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Effect of Acute Exercise on the Change of Lipid Profiles and Peroxides, Prostanoids and Platelet Activation in Hypercholesterolemic Patients Before and After Treatment

Journal
Prostaglandins
Journal Volume
48
Journal Issue
3
Pages
157
Date Issued
1994-12
Date
1994-12
Author(s)
MING-FONG CHEN  
Hsu, Hsiu-Ching
Lee, Yuan-Teh
DOI
10.1016/0090-6980(94)90016-7
URI
http://ntur.lib.ntu.edu.tw//handle/246246/126888
https://www.scopus.com/record/display.uri?eid=2-s2.0-0027932812&doi=10.1016%2f0090-6980%2894%2990016-7&origin=inward&txGid=e5655ba0e22c119ee4d590712a13a761
Abstract
The effects of acute exercise on the changes of plasma lipid profiles and peroxides, prostanoids and platelet activation in hypercholesterolemic patients before and after pravastatin 5 mg twice daily treatment for 4 weeks was studied in 30 (M/F=21/9, age= 52±7, Mean±SD) patients with plasma total cholesterol level > 240 mg/dl. Pravastatin significantly reduced plasma total and low density lipoprotein cholesterol levels as expected. All patients before and after treatment and 30 healthy controls performed a treadmill exercise test using the standard Bruce protocol. The cardiac performance was similar in all groups. Treadmill exercise did not influence lipid levels after plasma volume correction. Hypercholesterolemic patients had significantly higher pre-exercise levels of malondialdehyde, thromboxane B2 and β-thromboglobulin than after treatment or than pre-exercise levels in the control group. Treatment with lipid lowering drug pravastatin lowered the levels of these three parameters. At peak exercise, superoxide dismutase activity and 6-keto-PGF1α were elevated. At 10 min post exercise only malondialdehyde returned to pre-exercise levels. The superoxide dismutase, thromboxane B2 and β-thromboglobulin remained significantly higher. In the control subjects plasma β-thromboglobulin and thromboxane B2 returned to pre-exercise levels. These results suggest that hypercholesterolemia may induce lipid peroxidation and platelet activation in resting status. Lowering of plasma cholesterol of pravastatin causes a concomitant decrease in plasma malondialdehyde, thromboxane and β-thromboglobulin suggesting a decrease in lipid peroxidation and platelet activation. These changes were more pronounced in the hypercholesterolemic patients. Pravastatin treatment attenuated the increase in both malondialdehyde, β-thromboglobulin and the prostanoids, but not to the level of normal subjects. © 1994.
Subjects
Hypercholesterolemia; lipid peroxides; lipid profiles; platelet activation; pravastatin; prostanoids; treadmill exercise
SDGs

[SDGs]SDG3

Type
journal article

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