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Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition

INTRODUCTION: Breastfeeding effects on cognition are attributed to long-chain polyunsaturated fatty acids (LC-PUFAs), but controversy persists. Genetic variation in fatty acid desaturase (FADS) and elongase (ELOVL) enzymes has been overlooked when studying the effects of LC-PUFAs supply on cognition...

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Autores principales: Morales, Eva, Bustamante, Mariona, Gonzalez, Juan Ramon, Guxens, Monica, Torrent, Maties, Mendez, Michelle, Garcia-Esteban, Raquel, Julvez, Jordi, Forns, Joan, Vrijheid, Martine, Molto-Puigmarti, Carolina, Lopez-Sabater, Carmen, Estivill, Xavier, Sunyer, Jordi
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3044172/
https://www.ncbi.nlm.nih.gov/pubmed/21383846
http://dx.doi.org/10.1371/journal.pone.0017181
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author Morales, Eva
Bustamante, Mariona
Gonzalez, Juan Ramon
Guxens, Monica
Torrent, Maties
Mendez, Michelle
Garcia-Esteban, Raquel
Julvez, Jordi
Forns, Joan
Vrijheid, Martine
Molto-Puigmarti, Carolina
Lopez-Sabater, Carmen
Estivill, Xavier
Sunyer, Jordi
author_facet Morales, Eva
Bustamante, Mariona
Gonzalez, Juan Ramon
Guxens, Monica
Torrent, Maties
Mendez, Michelle
Garcia-Esteban, Raquel
Julvez, Jordi
Forns, Joan
Vrijheid, Martine
Molto-Puigmarti, Carolina
Lopez-Sabater, Carmen
Estivill, Xavier
Sunyer, Jordi
author_sort Morales, Eva
collection PubMed
description INTRODUCTION: Breastfeeding effects on cognition are attributed to long-chain polyunsaturated fatty acids (LC-PUFAs), but controversy persists. Genetic variation in fatty acid desaturase (FADS) and elongase (ELOVL) enzymes has been overlooked when studying the effects of LC-PUFAs supply on cognition. We aimed to: 1) to determine whether maternal genetic variants in the FADS cluster and ELOVL genes contribute to differences in LC-PUFA levels in colostrum; 2) to analyze whether these maternal variants are related to child cognition; and 3) to assess whether children's variants modify breastfeeding effects on cognition. METHODS: Data come from two population-based birth cohorts (n = 400 mother-child pairs from INMA-Sabadell; and n = 340 children from INMA-Menorca). LC-PUFAs were measured in 270 colostrum samples from INMA-Sabadell. Tag SNPs were genotyped both in mothers and children (13 in the FADS cluster, 6 in ELOVL2, and 7 in ELOVL5). Child cognition was assessed at 14 mo and 4 y using the Bayley Scales of Infant Development and the McCarthy Scales of Children's Abilities, respectively. RESULTS: Children of mothers carrying genetic variants associated with lower FADS1 activity (regulating AA and EPA synthesis), higher FADS2 activity (regulating DHA synthesis), and with higher EPA/AA and DHA/AA ratios in colostrum showed a significant advantage in cognition at 14 mo (3.5 to 5.3 points). Not being breastfed conferred an 8- to 9-point disadvantage in cognition among children GG homozygote for rs174468 (low FADS1 activity) but not among those with the A allele. Moreover, not being breastfed resulted in a disadvantage in cognition (5 to 8 points) among children CC homozygote for rs2397142 (low ELOVL5 activity), but not among those carrying the G allele. CONCLUSION: Genetically determined maternal supplies of LC-PUFAs during pregnancy and lactation appear to be crucial for child cognition. Breastfeeding effects on cognition are modified by child genetic variation in fatty acid desaturase and elongase enzymes.
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spelling pubmed-30441722011-03-07 Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition Morales, Eva Bustamante, Mariona Gonzalez, Juan Ramon Guxens, Monica Torrent, Maties Mendez, Michelle Garcia-Esteban, Raquel Julvez, Jordi Forns, Joan Vrijheid, Martine Molto-Puigmarti, Carolina Lopez-Sabater, Carmen Estivill, Xavier Sunyer, Jordi PLoS One Research Article INTRODUCTION: Breastfeeding effects on cognition are attributed to long-chain polyunsaturated fatty acids (LC-PUFAs), but controversy persists. Genetic variation in fatty acid desaturase (FADS) and elongase (ELOVL) enzymes has been overlooked when studying the effects of LC-PUFAs supply on cognition. We aimed to: 1) to determine whether maternal genetic variants in the FADS cluster and ELOVL genes contribute to differences in LC-PUFA levels in colostrum; 2) to analyze whether these maternal variants are related to child cognition; and 3) to assess whether children's variants modify breastfeeding effects on cognition. METHODS: Data come from two population-based birth cohorts (n = 400 mother-child pairs from INMA-Sabadell; and n = 340 children from INMA-Menorca). LC-PUFAs were measured in 270 colostrum samples from INMA-Sabadell. Tag SNPs were genotyped both in mothers and children (13 in the FADS cluster, 6 in ELOVL2, and 7 in ELOVL5). Child cognition was assessed at 14 mo and 4 y using the Bayley Scales of Infant Development and the McCarthy Scales of Children's Abilities, respectively. RESULTS: Children of mothers carrying genetic variants associated with lower FADS1 activity (regulating AA and EPA synthesis), higher FADS2 activity (regulating DHA synthesis), and with higher EPA/AA and DHA/AA ratios in colostrum showed a significant advantage in cognition at 14 mo (3.5 to 5.3 points). Not being breastfed conferred an 8- to 9-point disadvantage in cognition among children GG homozygote for rs174468 (low FADS1 activity) but not among those with the A allele. Moreover, not being breastfed resulted in a disadvantage in cognition (5 to 8 points) among children CC homozygote for rs2397142 (low ELOVL5 activity), but not among those carrying the G allele. CONCLUSION: Genetically determined maternal supplies of LC-PUFAs during pregnancy and lactation appear to be crucial for child cognition. Breastfeeding effects on cognition are modified by child genetic variation in fatty acid desaturase and elongase enzymes. Public Library of Science 2011-02-23 /pmc/articles/PMC3044172/ /pubmed/21383846 http://dx.doi.org/10.1371/journal.pone.0017181 Text en Morales 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
Morales, Eva
Bustamante, Mariona
Gonzalez, Juan Ramon
Guxens, Monica
Torrent, Maties
Mendez, Michelle
Garcia-Esteban, Raquel
Julvez, Jordi
Forns, Joan
Vrijheid, Martine
Molto-Puigmarti, Carolina
Lopez-Sabater, Carmen
Estivill, Xavier
Sunyer, Jordi
Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition
title Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition
title_full Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition
title_fullStr Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition
title_full_unstemmed Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition
title_short Genetic Variants of the FADS Gene Cluster and ELOVL Gene Family, Colostrums LC-PUFA Levels, Breastfeeding, and Child Cognition
title_sort genetic variants of the fads gene cluster and elovl gene family, colostrums lc-pufa levels, breastfeeding, and child cognition
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3044172/
https://www.ncbi.nlm.nih.gov/pubmed/21383846
http://dx.doi.org/10.1371/journal.pone.0017181
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