Cargando…

Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition

BACKGROUND: Early aggressive parenteral nutrition (PN), consisting of caloric and nitrogen intake soon after birth, is currently proposed for the premature baby. Some electrolyte disturbances, such as hypophosphatemia and hypercalcemia, considered unusual in early life, were recently described while...

Descripción completa

Detalles Bibliográficos
Autores principales: Bonsante, Francesco, Iacobelli, Silvia, Latorre, Giuseppe, Rigo, Jacques, De Felice, Claudio, Robillard, Pierre Yves, Gouyon, Jean Bernard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3744480/
https://www.ncbi.nlm.nih.gov/pubmed/23977367
http://dx.doi.org/10.1371/journal.pone.0072880
_version_ 1782280595376701440
author Bonsante, Francesco
Iacobelli, Silvia
Latorre, Giuseppe
Rigo, Jacques
De Felice, Claudio
Robillard, Pierre Yves
Gouyon, Jean Bernard
author_facet Bonsante, Francesco
Iacobelli, Silvia
Latorre, Giuseppe
Rigo, Jacques
De Felice, Claudio
Robillard, Pierre Yves
Gouyon, Jean Bernard
author_sort Bonsante, Francesco
collection PubMed
description BACKGROUND: Early aggressive parenteral nutrition (PN), consisting of caloric and nitrogen intake soon after birth, is currently proposed for the premature baby. Some electrolyte disturbances, such as hypophosphatemia and hypercalcemia, considered unusual in early life, were recently described while using this PN approach. We hypothesize that, due to its impact on cell metabolism, the initial amino acid (AA) amount may specifically influence the metabolism of phosphorus, and consequently of calcium. We aim to evaluate the influence of AA intake on calcium-phosphorus metabolism, and to create a calculation tool to estimate phosphorus needs. METHODS: Prospective observational study. Phosphate and calcium plasma concentrations and calcium balance were evaluated daily during the first week of life in very preterm infants, and their relationship with nutrition was studied. For this purpose, infants were divided into three groups: high, medium and low AA intake (HAA, MAA, LAA). A calculation formula to assess phosphorus needs was elaborated, with a theoretical model based on AA and calcium intake, and the cumulative deficit of phosphate intake was estimated. RESULTS: 154 infants were included. Hypophosphatemia (12.5%) and hypercalcemia (9.8%) were more frequent in the HAA than in the MAA (4.6% and 4.8%) and in the LAA group (0% and 1.9%); both p<0.001. DISCUSSION: Calcium-phosphorus homeostasis was influenced by the early AA intake. We propose to consider phosphorus and calcium imbalances as being part of a syndrome, related to incomplete provision of nutrients after the abrupt discontinuation of the placental nutrition at birth (PI-ReFeeding syndrome). We provide a simple tool to calculate the optimal phosphate intake. The early introduction of AA in the PN soon after birth might be completed by an early intake of phosphorus, since AA and phosphorus are (along with potassium) the main determinants of cellular growth.
format Online
Article
Text
id pubmed-3744480
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37444802013-08-23 Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition Bonsante, Francesco Iacobelli, Silvia Latorre, Giuseppe Rigo, Jacques De Felice, Claudio Robillard, Pierre Yves Gouyon, Jean Bernard PLoS One Research Article BACKGROUND: Early aggressive parenteral nutrition (PN), consisting of caloric and nitrogen intake soon after birth, is currently proposed for the premature baby. Some electrolyte disturbances, such as hypophosphatemia and hypercalcemia, considered unusual in early life, were recently described while using this PN approach. We hypothesize that, due to its impact on cell metabolism, the initial amino acid (AA) amount may specifically influence the metabolism of phosphorus, and consequently of calcium. We aim to evaluate the influence of AA intake on calcium-phosphorus metabolism, and to create a calculation tool to estimate phosphorus needs. METHODS: Prospective observational study. Phosphate and calcium plasma concentrations and calcium balance were evaluated daily during the first week of life in very preterm infants, and their relationship with nutrition was studied. For this purpose, infants were divided into three groups: high, medium and low AA intake (HAA, MAA, LAA). A calculation formula to assess phosphorus needs was elaborated, with a theoretical model based on AA and calcium intake, and the cumulative deficit of phosphate intake was estimated. RESULTS: 154 infants were included. Hypophosphatemia (12.5%) and hypercalcemia (9.8%) were more frequent in the HAA than in the MAA (4.6% and 4.8%) and in the LAA group (0% and 1.9%); both p<0.001. DISCUSSION: Calcium-phosphorus homeostasis was influenced by the early AA intake. We propose to consider phosphorus and calcium imbalances as being part of a syndrome, related to incomplete provision of nutrients after the abrupt discontinuation of the placental nutrition at birth (PI-ReFeeding syndrome). We provide a simple tool to calculate the optimal phosphate intake. The early introduction of AA in the PN soon after birth might be completed by an early intake of phosphorus, since AA and phosphorus are (along with potassium) the main determinants of cellular growth. Public Library of Science 2013-08-15 /pmc/articles/PMC3744480/ /pubmed/23977367 http://dx.doi.org/10.1371/journal.pone.0072880 Text en © 2013 Bonsante et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bonsante, Francesco
Iacobelli, Silvia
Latorre, Giuseppe
Rigo, Jacques
De Felice, Claudio
Robillard, Pierre Yves
Gouyon, Jean Bernard
Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition
title Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition
title_full Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition
title_fullStr Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition
title_full_unstemmed Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition
title_short Initial Amino Acid Intake Influences Phosphorus and Calcium Homeostasis in Preterm Infants – It Is Time to Change the Composition of the Early Parenteral Nutrition
title_sort initial amino acid intake influences phosphorus and calcium homeostasis in preterm infants – it is time to change the composition of the early parenteral nutrition
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3744480/
https://www.ncbi.nlm.nih.gov/pubmed/23977367
http://dx.doi.org/10.1371/journal.pone.0072880
work_keys_str_mv AT bonsantefrancesco initialaminoacidintakeinfluencesphosphorusandcalciumhomeostasisinpreterminfantsitistimetochangethecompositionoftheearlyparenteralnutrition
AT iacobellisilvia initialaminoacidintakeinfluencesphosphorusandcalciumhomeostasisinpreterminfantsitistimetochangethecompositionoftheearlyparenteralnutrition
AT latorregiuseppe initialaminoacidintakeinfluencesphosphorusandcalciumhomeostasisinpreterminfantsitistimetochangethecompositionoftheearlyparenteralnutrition
AT rigojacques initialaminoacidintakeinfluencesphosphorusandcalciumhomeostasisinpreterminfantsitistimetochangethecompositionoftheearlyparenteralnutrition
AT defeliceclaudio initialaminoacidintakeinfluencesphosphorusandcalciumhomeostasisinpreterminfantsitistimetochangethecompositionoftheearlyparenteralnutrition
AT robillardpierreyves initialaminoacidintakeinfluencesphosphorusandcalciumhomeostasisinpreterminfantsitistimetochangethecompositionoftheearlyparenteralnutrition
AT gouyonjeanbernard initialaminoacidintakeinfluencesphosphorusandcalciumhomeostasisinpreterminfantsitistimetochangethecompositionoftheearlyparenteralnutrition