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Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review

The maternal environment during the periconceptional period influences foetal growth and development, in part, via epigenetic mechanisms moderated by one-carbon metabolic pathways. During embryonic development, one-carbon metabolism is involved in brain development and neural programming. Derangemen...

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Autores principales: Rubini, Eleonora, Baijens, Inge M. M., Horánszky, Alex, Schoenmakers, Sam, Sinclair, Kevin D., Zana, Melinda, Dinnyés, András, Steegers-Theunissen, Régine P. M., Rousian, Melek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535925/
https://www.ncbi.nlm.nih.gov/pubmed/34681028
http://dx.doi.org/10.3390/genes12101634
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author Rubini, Eleonora
Baijens, Inge M. M.
Horánszky, Alex
Schoenmakers, Sam
Sinclair, Kevin D.
Zana, Melinda
Dinnyés, András
Steegers-Theunissen, Régine P. M.
Rousian, Melek
author_facet Rubini, Eleonora
Baijens, Inge M. M.
Horánszky, Alex
Schoenmakers, Sam
Sinclair, Kevin D.
Zana, Melinda
Dinnyés, András
Steegers-Theunissen, Régine P. M.
Rousian, Melek
author_sort Rubini, Eleonora
collection PubMed
description The maternal environment during the periconceptional period influences foetal growth and development, in part, via epigenetic mechanisms moderated by one-carbon metabolic pathways. During embryonic development, one-carbon metabolism is involved in brain development and neural programming. Derangements in one-carbon metabolism increase (i) the short-term risk of embryonic neural tube-related defects and (ii) long-term childhood behaviour, cognition, and autism spectrum disorders. Here we investigate the association between maternal one-carbon metabolism and foetal and neonatal brain growth and development. Database searching resulted in 26 articles eligible for inclusion. Maternal vitamin B(6), vitamin B(12), homocysteine, and choline were not associated with foetal and/or neonatal head growth. First-trimester maternal plasma folate within the normal range (>17 nmol/L) associated with increased foetal head size and head growth, and high erythrocyte folate (1538–1813 nmol/L) with increased cerebellar growth, whereas folate deficiency (<7 nmol/L) associated with a reduced foetal brain volume. Preconceptional folic acid supplement use and specific dietary patterns (associated with increased B vitamins and low homocysteine) increased foetal head size. Although early pregnancy maternal folate appears to be the most independent predictor of foetal brain growth, there is insufficient data to confirm the link between maternal folate and offspring risks for neurodevelopmental diseases.
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spelling pubmed-85359252021-10-23 Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review Rubini, Eleonora Baijens, Inge M. M. Horánszky, Alex Schoenmakers, Sam Sinclair, Kevin D. Zana, Melinda Dinnyés, András Steegers-Theunissen, Régine P. M. Rousian, Melek Genes (Basel) Review The maternal environment during the periconceptional period influences foetal growth and development, in part, via epigenetic mechanisms moderated by one-carbon metabolic pathways. During embryonic development, one-carbon metabolism is involved in brain development and neural programming. Derangements in one-carbon metabolism increase (i) the short-term risk of embryonic neural tube-related defects and (ii) long-term childhood behaviour, cognition, and autism spectrum disorders. Here we investigate the association between maternal one-carbon metabolism and foetal and neonatal brain growth and development. Database searching resulted in 26 articles eligible for inclusion. Maternal vitamin B(6), vitamin B(12), homocysteine, and choline were not associated with foetal and/or neonatal head growth. First-trimester maternal plasma folate within the normal range (>17 nmol/L) associated with increased foetal head size and head growth, and high erythrocyte folate (1538–1813 nmol/L) with increased cerebellar growth, whereas folate deficiency (<7 nmol/L) associated with a reduced foetal brain volume. Preconceptional folic acid supplement use and specific dietary patterns (associated with increased B vitamins and low homocysteine) increased foetal head size. Although early pregnancy maternal folate appears to be the most independent predictor of foetal brain growth, there is insufficient data to confirm the link between maternal folate and offspring risks for neurodevelopmental diseases. MDPI 2021-10-17 /pmc/articles/PMC8535925/ /pubmed/34681028 http://dx.doi.org/10.3390/genes12101634 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Rubini, Eleonora
Baijens, Inge M. M.
Horánszky, Alex
Schoenmakers, Sam
Sinclair, Kevin D.
Zana, Melinda
Dinnyés, András
Steegers-Theunissen, Régine P. M.
Rousian, Melek
Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review
title Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review
title_full Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review
title_fullStr Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review
title_full_unstemmed Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review
title_short Maternal One-Carbon Metabolism during the Periconceptional Period and Human Foetal Brain Growth: A Systematic Review
title_sort maternal one-carbon metabolism during the periconceptional period and human foetal brain growth: a systematic review
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8535925/
https://www.ncbi.nlm.nih.gov/pubmed/34681028
http://dx.doi.org/10.3390/genes12101634
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