Effect of exercise training on the fatty acid composition of lipid classes in rat liver, skeletal muscle, and adipose tissue |
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Authors: | Anatoli Petridou Michalis G. Nikolaidis Antonis Matsakas Thorsten Schulz Horst Michna Vassilis Mougios |
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Affiliation: | (1) Department of Physical Education and Sport Science, Aristotle University of Thessaloniki, 541 24 Thessaloniki, Greece;(2) Department of Molecular and Cellular Sports Medicine, German Sport University Cologne, Carl-Diem Weg 6, 50933 Cologne, Germany;(3) Institute of Public Health Research, Technical University Munich, Connollystrasse 32, 80809 Munich, Germany |
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Abstract: | The aim of the present study was to examine the effects of 8 weeks of exercise training on the fatty acid composition of phospholipids (PL) and triacylglycerols (TG) in rat liver, skeletal muscle (gastrocnemius medialis), and adipose tissue (epididymal and subcutaneous fat). For this purpose, the relevant tissues of 11 trained rats were compared to those of 14 untrained ones. Training caused several significant differences of large effect size in the concentrations and percentages of individual fatty acids in the aforementioned lipid classes. The fatty acid composition of liver PL, in terms of both concentrations and percentages, changed with training. The TG content of muscle and subcutaneous adipose tissue decreased significantly with training. In contrast to the liver, where no significant differences in the fatty acid profile of TG were found, muscle underwent more significant differences in TG than PL, and adipose tissue only in TG. Most differences were in the same direction in muscle and adipose tissue TG, suggesting a common underlying mechanism. Estimated fatty acid elongase activity was significantly higher, whereas 9-desaturase activity was significantly lower in muscle and adipose tissue of the trained rats. In conclusion, exercise training modified the fatty acid composition of liver PL, muscle PL and TG, as well as adipose tissue TG. These findings may aid in delineating the effects of exercise on biological functions such as membrane properties, cell signaling, and gene expression.An erratum to this article can be found at |
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Keywords: | Carnitine palmitoyltransferase Exercise Fatty acid profile Gastrocnemius 3-Hydroxyacyl CoA dehydrogenase |
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