The Critical Role of Iron in Pregnancy, Puerperium, and Fetal Development
Abstract
:1. Introduction
2. Epidemiology
3. Physiological Distribution of Iron—A Starting Point for Understanding Deficiency
4. Normal Pregnancy Development and Iron Deficiency
4.1. Iron Deficiency and Reproductive Outcomes: Implantation, Infertility, Miscarriage, and Ectopic Pregnancy
4.2. Iron Deficiency and the Risk of Congenital Heart Defects (CHD)
4.3. Neurodevelopmental and Perinatal Effects of Maternal Iron Deficiency
4.4. Restless Legs Syndrome and Iron-Related Neurological Changes in Pregnancy
4.5. Cardiac Function and ECG Changes in Pregnant Women with Iron Deficiency
4.6. Immune Suppression and Maternal Outcomes in Iron Deficiency Anemia
4.7. Perinatal Mental Health and Iron Status
4.8. Impact of Iron Deficiency on Breastfeeding
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
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Health Domain | Impact of Iron Deficiency | Source |
---|---|---|
Mother | Anemia and fatigue | Benson et al., 2022 [10] |
Mother | Cardiac rhythm disturbances (QTc, tachycardia) | Sifakis and Pharmakides, 2000 [44] |
Mother | Restless legs syndrome (RLS) | Srivanitchapoom et al., 2014 [41] |
Mother | Prenatal and postpartum depression | Goshtasebi et al., 2013 [45] |
Mother | Impaired immunity, increased risk of infections | Sobhani et al., 2011 [46] |
Mother | Lactation difficulties—reduced milk volume and iron content | Benson et al., 2022 [10] |
Mother | Increased risk of perinatal complications (hemorrhage, infections, prolonged hospitalization) | Kemppinen et al., 2020 [39] |
Mother | Higher risk of cardiovascular complications (cardiac hypertrophy) | Sifakis and Pharmakides, 2000 [44] |
Fetus/ Newborn | Low birth weight | Alwan et al., 2015 [21] |
Fetus/ Newborn | Fetal growth restriction (FGR) | Kemppinen et al., 2020 [39] |
Fetus/ Newborn | Increased risk of congenital heart defects | Kalisch-Smith et al., 2021 [32] |
Fetus/ Newborn | Neurodevelopmental disorders (e.g., autism, ADHD, intellectual disability) | Wiegersma et al., 2019 [22] |
Fetus/ Newborn | Disrupted myelination and dendritic development | Georgieff, 2023 [20] |
Fetus/ Newborn | Higher risk of miscarriage and implantation failure | Silfvast and Simberg, 2022 [28] |
Fetus/ Newborn | Increased risk of ectopic pregnancy | Wu et al., 2024 [29] |
Fetus/ Newborn | Impaired energy metabolism in the fetal brain | Zaugg et al., 2022 [34] |
Infant | Risk of anemia by 9 months of age | Georgieff, 2020 [18] |
Infant | Attention, working memory and language deficits | Özyurt and Bulutlar, 2024 [36] |
Infant | Shortened breastfeeding duration | Benson et al., 2022 [10] |
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Zych-Krekora, K.; Sylwestrzak, O.; Krekora, M. The Critical Role of Iron in Pregnancy, Puerperium, and Fetal Development. J. Clin. Med. 2025, 14, 3482. https://doi.org/10.3390/jcm14103482
Zych-Krekora K, Sylwestrzak O, Krekora M. The Critical Role of Iron in Pregnancy, Puerperium, and Fetal Development. Journal of Clinical Medicine. 2025; 14(10):3482. https://doi.org/10.3390/jcm14103482
Chicago/Turabian StyleZych-Krekora, Katarzyna, Oskar Sylwestrzak, and Michał Krekora. 2025. "The Critical Role of Iron in Pregnancy, Puerperium, and Fetal Development" Journal of Clinical Medicine 14, no. 10: 3482. https://doi.org/10.3390/jcm14103482
APA StyleZych-Krekora, K., Sylwestrzak, O., & Krekora, M. (2025). The Critical Role of Iron in Pregnancy, Puerperium, and Fetal Development. Journal of Clinical Medicine, 14(10), 3482. https://doi.org/10.3390/jcm14103482