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Serum Phospholipid Fatty Acids, Adipose Tissue, and Metabolic Markers in Obese Adolescents
Author(s) -
Karlsson Martin,
Mårild Staffan,
Brandberg John,
Lönn Lars,
Friberg Peter,
Strandvik Birgitta
Publication year - 2006
Publication title -
obesity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.438
H-Index - 199
eISSN - 1930-739X
pISSN - 1930-7381
DOI - 10.1038/oby.2006.225
Subject(s) - medicine , polyunsaturated fatty acid , endocrinology , docosahexaenoic acid , arachidonic acid , adipose tissue , phospholipid , fatty acid , obesity , chemistry , biochemistry , membrane , enzyme
Objective: Fatty acid (FA) composition has a role in adipogenesis. The objective was to study serum phospholipid (PL) FAs in adolescents and their relation to abdominal adipose tissue (AT) compartments and metabolic markers. Research Methods and Procedures: Abdominal AT was measured by magnetic resonance imaging and FA pattern was determined in serum PL of 10 obese adolescents (5 females), median age 12.0 years (range, 10.4 to 16.4) and BMI 30.7 (26.8 to 40.4), and 15 lean control subjects (9 females), median age 12.6 years (range, 11.3 to 15.4), and BMI 19.5 (17.1 to 23.4). Results: Obese adolescents had relatively higher levels of saturated FA (SFA) and nervonic acid compared with controls. Serum PL concentration of n‐3 polyunsaturated fatty acids (PUFA) was lower in the obese vs. lean females ( p = 0.01), including docosahexaenoic acid (DHA) ( p = 0.01). The ratios of arachidonic acid to DHA and total n‐6/n‐3 FA were increased in obese children ( p = 0.02 and 0.01, respectively). n‐3 PUFAs were inversely correlated to all subcutaneous AT compartments except visceral AT. The homeostasis model assessment index of β‐cell function related inversely to DHA concentration ( p = 0.03). All changes were more marked in the females. Discussion: Serum FA pattern in obese adolescents differed significantly from that in age‐matched lean controls, reflecting a decrease in n‐3 PUFA, especially DHA, and an increase in SFA. The subcutaneous AT, but not visceral AT, correlated to the changes in PUFA and SFA, suggesting an abnormal essential FA metabolism in obese adolescents.

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