Literature DB >> 9078541

Glutamine metabolism in very low birth weight infants.

D Darmaun1, J C Roig, N Auestad, B K Sager, J Neu.   

Abstract

To quantitate glutamine kinetics in premature infants and determine whether glutamine affects leucine metabolism. 11 very low birth weight (< 1250 g) neonates received 4-h i.v. infusions of L-[2H3]leucine and L-[13C5]glutamine, along with orogastric infusion of L-[I-13C]leucine and L-[I-13C]glutamine on the 10th d of life and in the fed state. Patients were receiving parenteral nutrition and were randomized to receive either hypocaloric, enteral preterm formula alone (controls; n = 5), or glutamine (0.2 g.kg-1.d-1 on the day of the study) supplemented formula (GL.n; n = 6). The rates of appearance (Ra) of leucine and glutamine, and their rates of splanchnic extraction were determined from isotopic enrichments in plasma at steady state. Leucine release from protein breakdown did not differ between groups (123 +/- 51 versus 162 +/- 94 mumol.kg-1h-1 in the controls and GLN group, respectively). Glutamine de novo synthesis accounted for > 80% of overall glutamine Ra, and was similar in both groups (626 +/- 177 versus 525 +/- 86 mumol.kg-1.h-1; NS); 46 +/- 16% and 53 +/- 31% of the enteral glutamine underwent first-pass splanchnic extraction in the controls and GLN group, respectively. These findings indicate that the pathways of glutamine de novo synthesis and glutamine utilization in the splanchnic bed are functional in very low birth weight humans by the 10th d of life. Glutamine supplementation provided at low doses on a hypocaloric regimen results in no apparent differences in flux of glutamine or leucine.

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Year:  1997        PMID: 9078541     DOI: 10.1203/00006450-199703000-00015

Source DB:  PubMed          Journal:  Pediatr Res        ISSN: 0031-3998            Impact factor:   3.756


  8 in total

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5.  1H-NMR-based metabolic profiling of maternal and umbilical cord blood indicates altered materno-foetal nutrient exchange in preterm infants.

Authors:  Illa Tea; Gwénaëlle Le Gall; Alice Küster; Nadia Guignard; Marie-Cécile Alexandre-Gouabau; Dominique Darmaun; Richard J Robins
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7.  Branched-chain amino acid supplementation for improving growth and development in term and preterm neonates.

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8.  Use of UPLC-ESI-MS/MS to quantitate free amino acid concentrations in micro-samples of mammalian milk.

Authors:  Véronique Ferchaud Roucher; Emmanuelle Desnots; Charlotte Naël; Aurore Martin Agnoux; Marie-Cécile Alexandre-Gouabau; Dominique Darmaun; Clair-Yves Boquien
Journal:  Springerplus       Date:  2013-11-20
  8 in total

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