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Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile

Research in both animals and humans shows that some nutrients are important in pregnancy and during the first years of life to support brain and cognitive development. Our aim was to evaluate the role of selenium (Se) in supporting brain and behavioral plasticity and maturation. Pregnant and lactati...

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Autores principales: Ajmone-Cat, Maria Antonietta, De Simone, Roberta, Tartaglione, Anna Maria, Di Biase, Antonella, Di Benedetto, Rita, D’Archivio, Massimo, Varì, Rosaria, Ricceri, Laura, Aureli, Federica, Iacoponi, Francesca, Raggi, Andrea, Cubadda, Francesco, Fairweather-Tait, Susan J., Calamandrei, Gemma, Minghetti, Luisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104078/
https://www.ncbi.nlm.nih.gov/pubmed/35565817
http://dx.doi.org/10.3390/nu14091850
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author Ajmone-Cat, Maria Antonietta
De Simone, Roberta
Tartaglione, Anna Maria
Di Biase, Antonella
Di Benedetto, Rita
D’Archivio, Massimo
Varì, Rosaria
Ricceri, Laura
Aureli, Federica
Iacoponi, Francesca
Raggi, Andrea
Cubadda, Francesco
Fairweather-Tait, Susan J.
Calamandrei, Gemma
Minghetti, Luisa
author_facet Ajmone-Cat, Maria Antonietta
De Simone, Roberta
Tartaglione, Anna Maria
Di Biase, Antonella
Di Benedetto, Rita
D’Archivio, Massimo
Varì, Rosaria
Ricceri, Laura
Aureli, Federica
Iacoponi, Francesca
Raggi, Andrea
Cubadda, Francesco
Fairweather-Tait, Susan J.
Calamandrei, Gemma
Minghetti, Luisa
author_sort Ajmone-Cat, Maria Antonietta
collection PubMed
description Research in both animals and humans shows that some nutrients are important in pregnancy and during the first years of life to support brain and cognitive development. Our aim was to evaluate the role of selenium (Se) in supporting brain and behavioral plasticity and maturation. Pregnant and lactating female rats and their offspring up to postnatal day 40 were fed isocaloric diets differing in Se content—i.e., optimal, sub-optimal, and deficient—and neurodevelopmental, neuroinflammatory, and anti-oxidant markers were analyzed. We observed early adverse behavioral changes in juvenile rats only in sub-optimal offspring. In addition, sub-optimal, more than deficient supply, reduced basal glial reactivity in sex dimorphic and brain-area specific fashion. In female offspring, deficient and sub-optimal diets reduced the antioxidant Glutathione peroxidase (GPx) activity in the cortex and in the liver, the latter being the key organ regulating Se metabolism and homeostasis. The finding that the Se sub-optimal was more detrimental than Se deficient diet may suggest that maternal Se deficient diet, leading to a lower Se supply at earlier stages of fetal development, stimulated homeostatic mechanisms in the offspring that were not initiated by sub-optimal Se. Our observations demonstrate that even moderate Se deficiency during early life negatively may affect, in a sex-specific manner, optimal brain development.
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spelling pubmed-91040782022-05-14 Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile Ajmone-Cat, Maria Antonietta De Simone, Roberta Tartaglione, Anna Maria Di Biase, Antonella Di Benedetto, Rita D’Archivio, Massimo Varì, Rosaria Ricceri, Laura Aureli, Federica Iacoponi, Francesca Raggi, Andrea Cubadda, Francesco Fairweather-Tait, Susan J. Calamandrei, Gemma Minghetti, Luisa Nutrients Article Research in both animals and humans shows that some nutrients are important in pregnancy and during the first years of life to support brain and cognitive development. Our aim was to evaluate the role of selenium (Se) in supporting brain and behavioral plasticity and maturation. Pregnant and lactating female rats and their offspring up to postnatal day 40 were fed isocaloric diets differing in Se content—i.e., optimal, sub-optimal, and deficient—and neurodevelopmental, neuroinflammatory, and anti-oxidant markers were analyzed. We observed early adverse behavioral changes in juvenile rats only in sub-optimal offspring. In addition, sub-optimal, more than deficient supply, reduced basal glial reactivity in sex dimorphic and brain-area specific fashion. In female offspring, deficient and sub-optimal diets reduced the antioxidant Glutathione peroxidase (GPx) activity in the cortex and in the liver, the latter being the key organ regulating Se metabolism and homeostasis. The finding that the Se sub-optimal was more detrimental than Se deficient diet may suggest that maternal Se deficient diet, leading to a lower Se supply at earlier stages of fetal development, stimulated homeostatic mechanisms in the offspring that were not initiated by sub-optimal Se. Our observations demonstrate that even moderate Se deficiency during early life negatively may affect, in a sex-specific manner, optimal brain development. MDPI 2022-04-28 /pmc/articles/PMC9104078/ /pubmed/35565817 http://dx.doi.org/10.3390/nu14091850 Text en © 2022 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 Article
Ajmone-Cat, Maria Antonietta
De Simone, Roberta
Tartaglione, Anna Maria
Di Biase, Antonella
Di Benedetto, Rita
D’Archivio, Massimo
Varì, Rosaria
Ricceri, Laura
Aureli, Federica
Iacoponi, Francesca
Raggi, Andrea
Cubadda, Francesco
Fairweather-Tait, Susan J.
Calamandrei, Gemma
Minghetti, Luisa
Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile
title Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile
title_full Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile
title_fullStr Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile
title_full_unstemmed Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile
title_short Critical Role of Maternal Selenium Nutrition in Neurodevelopment: Effects on Offspring Behavior and Neuroinflammatory Profile
title_sort critical role of maternal selenium nutrition in neurodevelopment: effects on offspring behavior and neuroinflammatory profile
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104078/
https://www.ncbi.nlm.nih.gov/pubmed/35565817
http://dx.doi.org/10.3390/nu14091850
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