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Am J Physiol Endocrinol Metab 285: E917-E925, 2003. First published June 10, 2003; doi:10.1152/ajpendo.00128.2003
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Influence of diet on the modeling of adipose tissue triglycerides during growth

Daniel Z. Brunengraber,3 Brendan J. McCabe,3 Takhar Kasumov,3 James C. Alexander,1 Visvanathan Chandramouli,2 and Stephen F. Previs3

Departments of 1Mathematics, 2Medicine, and 3Nutrition, Case Western Reserve University School of Medicine, Cleveland, Ohio 44106

Submitted 26 March 2003 ; accepted in final form 6 June 2003

We have studied the accretion of lipids in growing mice. We measured the rates of synthesis and degradation of triglycerides in epididymal fat pads of mice maintained for 44 days on a low-fat, high-carbohydrate diet (I) or a high-fat, lowcarbohydrate diet (II). 2H2O was added to the drinking water for 14 days. Rates of incorporation/washout of 2H to/from C1 of triglyceride-glycerol showed that triglyceride synthesis was greater than triglyceride degradation (net triglyceride balance was ~2.5 times greater in II than in I). The data also show that the contribution of de novo lipogenesis to triglyceride-bound palmitate was ~3 times greater in I than in II. This was consistent with a greater relative intake of carbohydrate in I vs. II. The rates of incorporation and washout of newly synthesized (2H-labeled) palmitate into and from triglycerides were also measured. Those data suggested a remodeling of triglyceride-bound fatty acids. On measuring the profile of triglyceride-bound fatty acids, we observed a decrease in the relative abundance of triglyceride-bound palmitate and stearate and an increase in triglyceride-bound oleate and linoleate. This was observed in I and II. In summary, diet substantially affects the deposition and modeling of triglycerides in adipose tissue during growth. 2H2O can be used to examine the mechanisms responsible for the accumulation of triglycerides, e.g., factors that affect 1) triglyceride synthesis and degradation and 2) the source of fatty acids that are used in esterification.

deuterium; stable isotopes; lipid metabolism; pediatric obesity; insulin resistance



Address for reprint requests and other correspondence: S. F. Previs, Dept. of Nutrition, Dental Bldg., Rm. 201, Case Western Reserve Univ. School of Medicine, 10900 Euclid Ave., Cleveland, OH 44106–4906 (sxp29{at}po.cwru.edu).




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