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Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply

The demand for iron is high in pregnancy to meet the increased requirements for erythropoiesis. Even pregnant females with initially iron‐replete stores develop iron‐deficiency anemia, due to inadequate iron absorption. In anemic females, the maternal iron supply is dedicated to maintaining iron met...

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Autores principales: Mazgaj, Rafał, Lipiński, Paweł, Edison, Eunice Sindhuvi, Bednarz, Aleksandra, Staroń, Robert, Haberkiewicz, Olga, Lenartowicz, Małgorzata, Smuda, Ewa, Jończy, Aneta, Starzyński, Rafał R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8251567/
https://www.ncbi.nlm.nih.gov/pubmed/33684239
http://dx.doi.org/10.1002/ajh.26152
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author Mazgaj, Rafał
Lipiński, Paweł
Edison, Eunice Sindhuvi
Bednarz, Aleksandra
Staroń, Robert
Haberkiewicz, Olga
Lenartowicz, Małgorzata
Smuda, Ewa
Jończy, Aneta
Starzyński, Rafał R.
author_facet Mazgaj, Rafał
Lipiński, Paweł
Edison, Eunice Sindhuvi
Bednarz, Aleksandra
Staroń, Robert
Haberkiewicz, Olga
Lenartowicz, Małgorzata
Smuda, Ewa
Jończy, Aneta
Starzyński, Rafał R.
author_sort Mazgaj, Rafał
collection PubMed
description The demand for iron is high in pregnancy to meet the increased requirements for erythropoiesis. Even pregnant females with initially iron‐replete stores develop iron‐deficiency anemia, due to inadequate iron absorption. In anemic females, the maternal iron supply is dedicated to maintaining iron metabolism in the fetus and placenta. Here, using a mouse model of iron deficiency in pregnancy, we show that iron recycled from senescent erythrocytes becomes a predominant source of this microelement that can be transferred to the placenta in females with depleted iron stores. Ferroportin is a key protein in the molecular machinery of cellular iron egress. We demonstrate that under iron deficiency in pregnancy, levels of ferroportin are greatly reduced in the duodenum, placenta and fetal liver, but not in maternal liver macrophages and in the spleen. Although low expression of both maternal and fetal hepcidin predicted ferroportin up‐regulation in examined locations, its final expression level was very likely correlated with tissue iron status. Our results argue that iron released into the circulation of anemic females is taken up by the placenta, as evidenced by high expression of iron importers on syncytiotrophoblasts. Then, a substantial decrease in levels of ferroportin on the basolateral side of syncytiotrophoblasts, may be responsible for the reduced transfer of iron to the fetus. As attested by the lowest decrease in iron content among analyzed tissues, some part is retained in the placenta. These findings confirm the key role played by ferroportin in tuning iron turnover in iron‐deficient pregnant mouse females and their fetuses.
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spelling pubmed-82515672021-07-06 Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply Mazgaj, Rafał Lipiński, Paweł Edison, Eunice Sindhuvi Bednarz, Aleksandra Staroń, Robert Haberkiewicz, Olga Lenartowicz, Małgorzata Smuda, Ewa Jończy, Aneta Starzyński, Rafał R. Am J Hematol Research Articles The demand for iron is high in pregnancy to meet the increased requirements for erythropoiesis. Even pregnant females with initially iron‐replete stores develop iron‐deficiency anemia, due to inadequate iron absorption. In anemic females, the maternal iron supply is dedicated to maintaining iron metabolism in the fetus and placenta. Here, using a mouse model of iron deficiency in pregnancy, we show that iron recycled from senescent erythrocytes becomes a predominant source of this microelement that can be transferred to the placenta in females with depleted iron stores. Ferroportin is a key protein in the molecular machinery of cellular iron egress. We demonstrate that under iron deficiency in pregnancy, levels of ferroportin are greatly reduced in the duodenum, placenta and fetal liver, but not in maternal liver macrophages and in the spleen. Although low expression of both maternal and fetal hepcidin predicted ferroportin up‐regulation in examined locations, its final expression level was very likely correlated with tissue iron status. Our results argue that iron released into the circulation of anemic females is taken up by the placenta, as evidenced by high expression of iron importers on syncytiotrophoblasts. Then, a substantial decrease in levels of ferroportin on the basolateral side of syncytiotrophoblasts, may be responsible for the reduced transfer of iron to the fetus. As attested by the lowest decrease in iron content among analyzed tissues, some part is retained in the placenta. These findings confirm the key role played by ferroportin in tuning iron turnover in iron‐deficient pregnant mouse females and their fetuses. John Wiley & Sons, Inc. 2021-03-26 2021-06-01 /pmc/articles/PMC8251567/ /pubmed/33684239 http://dx.doi.org/10.1002/ajh.26152 Text en © 2021 The Authors. American Journal of Hematology published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Mazgaj, Rafał
Lipiński, Paweł
Edison, Eunice Sindhuvi
Bednarz, Aleksandra
Staroń, Robert
Haberkiewicz, Olga
Lenartowicz, Małgorzata
Smuda, Ewa
Jończy, Aneta
Starzyński, Rafał R.
Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply
title Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply
title_full Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply
title_fullStr Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply
title_full_unstemmed Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply
title_short Marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply
title_sort marginally reduced maternal hepatic and splenic ferroportin under severe nutritional iron deficiency in pregnancy maintains systemic iron supply
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8251567/
https://www.ncbi.nlm.nih.gov/pubmed/33684239
http://dx.doi.org/10.1002/ajh.26152
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