Literature DB >> 7814626

Pathway of free fatty acid oxidation in human subjects. Implications for tracer studies.

L S Sidossis1, A R Coggan, A Gastaldelli, R R Wolfe.   

Abstract

To determine the pathway of plasma FFA oxidation and the site(s) of label fixation observed during infusion of FFA tracers, [1-13C]palmitate and [1-14C]acetate were infused intravenously for 3 h in five volunteers. Breath 13CO2 enrichment and 14CO2 specific activity were followed for 6 h to determine the labeled CO2 decay rates. Acetate enters directly into the TCA cycle; hence, if palmitate transits a large lipid pool before oxidation, 13CO2 enrichment (from palmitate) should decay slower than 14CO2 specific activity (from acetate). Breath 13CO2 enrichment and 14CO2 specific activity decayed at a similar rate after stopping the tracer infusions (half-lives of 13CO2 and 14CO2 decay: mean [+/- SE] 106.6 +/- 8.9 min, and 96.9 +/- 6.0 min, respectively, P = NS), which suggests that palmitate enters the TCA cycle directly and that label fixation occurs after citrate synthesis. Significant label fixation was shown in plasma glutamate/glutamine and lactate/pyruvate during infusion of either [1,2-13C]acetate or [U-13C]palmitate, suggesting that TCA cycle exchange reactions are at least partly responsible for label fixation. This was consistent with our finding that the half-lives of 13CO2 enrichment and 14CO2 specific activity decreased significantly during exercise to 14.4 +/- 3 min and 16.8 +/- 1 min, respectively, since exercise significantly increases the rate of the TCA cycle in relation to that of the TCA cycle exchange reactions. We conclude that plasma FFA entering cells destined to be oxidized are directly oxidized and that tracer estimates of plasma FFA oxidation will underestimate the true value unless account is taken of the extent of label fixation.

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Year:  1995        PMID: 7814626      PMCID: PMC295429          DOI: 10.1172/JCI117652

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  31 in total

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Authors:  A R Coggan
Journal:  Sports Med       Date:  1991-02       Impact factor: 11.136

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3.  Measurement of pyruvate and lactate kinetics across the hindlimb and gut of anesthetized dogs.

Authors:  D L Chinkes; X J Zhang; J A Romijn; Y Sakurai; R R Wolfe
Journal:  Am J Physiol       Date:  1994-07

4.  Uptake and release of free fatty acids and other metabolites in the legs of exercising men.

Authors:  R J Havel; B Pernow; N L Jones
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5.  Effect of insulin on oxidative and nonoxidative pathways of free fatty acid metabolism in human obesity.

Authors:  L C Groop; R C Bonadonna; D C Simonson; A S Petrides; M Shank; R A DeFronzo
Journal:  Am J Physiol       Date:  1992-07

6.  Noninvasive tracing of Krebs cycle metabolism in liver.

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7.  Measurement of de novo hepatic lipogenesis in humans using stable isotopes.

Authors:  M K Hellerstein; M Christiansen; S Kaempfer; C Kletke; K Wu; J S Reid; K Mulligan; N S Hellerstein; C H Shackleton
Journal:  J Clin Invest       Date:  1991-05       Impact factor: 14.808

8.  Regulation of endogenous fat and carbohydrate metabolism in relation to exercise intensity and duration.

Authors:  J A Romijn; E F Coyle; L S Sidossis; A Gastaldelli; J F Horowitz; E Endert; R R Wolfe
Journal:  Am J Physiol       Date:  1993-09

9.  How valid are isotopic measurements of fatty acid oxidation?

Authors:  V J Heiling; J M Miles; M D Jensen
Journal:  Am J Physiol       Date:  1991-11

10.  Role of free fatty acids and insulin in determining free fatty acid and lipid oxidation in man.

Authors:  L C Groop; R C Bonadonna; M Shank; A S Petrides; R A DeFronzo
Journal:  J Clin Invest       Date:  1991-01       Impact factor: 14.808

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  13 in total

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Authors:  G van Hall; M Sacchetti; G Rådegran
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2.  Rapid measurement of plasma free fatty acid concentration and isotopic enrichment using LC/MS.

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3.  The use of the [1,2-13C]acetate recovery factor in metabolic research.

Authors:  Luc J C van Loon; Rene Koopman; Patrick Schrauwen; Jos Stegen; Anton J M Wagenmakers
Journal:  Eur J Appl Physiol       Date:  2003-04-01       Impact factor: 3.078

Review 4.  Oxidation of carbohydrate feedings during prolonged exercise: current thoughts, guidelines and directions for future research.

Authors:  A E Jeukendrup; R Jentjens
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5.  Glucose kinetics during prolonged exercise in highly trained human subjects: effect of glucose ingestion.

Authors:  A E Jeukendrup; A Raben; A Gijsen; J H Stegen; F Brouns; W H Saris; A J Wagenmakers
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Authors:  L J van Loon; P L Greenhaff; D Constantin-Teodosiu; W H Saris; A J Wagenmakers
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7.  Hyperinsulinemia and skeletal muscle fatty acid trafficking.

Authors:  Jill A Kanaley; Samyah Shadid; Michael T Sheehan; ZengKui Guo; Michael D Jensen
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8.  Glucose plus insulin regulate fat oxidation by controlling the rate of fatty acid entry into the mitochondria.

Authors:  L S Sidossis; C A Stuart; G I Shulman; G D Lopaschuk; R R Wolfe
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9.  Measuring plasma fatty acid oxidation with intravenous bolus injection of 3H- and 14C-fatty acid.

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10.  Validation of the [1,2-13C]acetate recovery factor for correction of [U-13C]palmitate oxidation rates in humans.

Authors:  P Schrauwen; D P van Aggel-Leijssen; W D van Marken Lichtenbelt; M A van Baak; A P Gijsen; A J Wagenmakers
Journal:  J Physiol       Date:  1998-11-15       Impact factor: 5.182

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