Literature DB >> 8238327

Leucine metabolism at graded amino acid intakes in children receiving parenteral nutrition.

O Goulet1, S DePotter, J Salas, J J Robert, M Rongier, M Ben Hariz, J Koziet, J F Desjeux, C Ricour, D Darmaun.   

Abstract

To assess the response of protein turnover to graded levels of amino acid (AA) intakes, leucine kinetics were determined in six 8- to 16-yr-old patients in a stable nutritional status receiving home parenteral nutrition (PN) for short-bowel syndrome or intestinal pseudo-obstruction syndrome. Although daily energy intake was kept constant at 68.7 +/- 13 kcal/kg lean body mass (LBM) with 25.4 +/- 3.6% lipid, patients were given, for three consecutive 7-day periods, 0.7, 1.5, or 2.5 g AA.kg LBM-1.day-1, with the order of the regimens being randomized. On day 7 of each period, a 4-h infusion of L-[1-13C]leucine was performed during intravenous feeding; plasma [13C]ketoisocaproate and expired 13CO2 enrichments were used to assess whole body leucine turnover (Ra), oxidation rate (Ox), nonoxidative disposal [an estimate of protein synthesis (S)], and leucine derived from protein breakdown (B). Urine collection (24 h) was performed for determination of nitrogen excretion. Results indicate a dose-dependent rise in plasma leucine concentration, Ra, and Ox but no significant change in B. There was a significant increase of S (P = 0.04 analysis of variance) with increased AA intakes as well as net leucine balance (P = 0.02). Results are consistent with improved leucine balance, when leucine intake increases, despite increased leucine oxidation. The net protein gain observed with higher AA intakes may suggest a beneficial effect for children receiving long-term PN.

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Year:  1993        PMID: 8238327     DOI: 10.1152/ajpendo.1993.265.4.E540

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  2 in total

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Authors:  Olivier Le Bacquer; Nelly Mauras; Susan Welch; Morey Haymond; Dominique Darmaun
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2.  Circulating branched-chain amino acid concentrations are associated with obesity and future insulin resistance in children and adolescents.

Authors:  S E McCormack; O Shaham; M A McCarthy; A A Deik; T J Wang; R E Gerszten; C B Clish; V K Mootha; S K Grinspoon; A Fleischman
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  2 in total

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