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Updated: Mar 18, 2026

Quantitating Iron Transport Across the Mouse Placenta In Vivo Using Nonradioactive Iron Isotopes
Published on: May 10, 2022
Maternal iron status during pregnancy compared with neonatal iron status better predicts placental iron transporter
Cora M Best1, Eva K Pressman2, Chang Cao3
1Division of Nutritional Sciences, Cornell University, Ithaca, New York, USA.
Insights
Maternal iron status during pregnancy, not neonatal status, significantly influences placental iron transporter expression, particularly transferrin receptor 1 (TfR1). This highlights the critical role of maternal nutrition in fetal iron supply.
Area of Science:
- Obstetrics and Gynecology
- Maternal-Fetal Medicine
- Nutritional Science
Background:
- The placenta regulates iron (Fe) transport, crucial for fetal development.
- Both nonheme and heme Fe transport proteins are expressed in the placenta.
- Understanding the regulation of these transporters by maternal and neonatal Fe status is vital.
Purpose of the Study:
- To investigate the impact of maternal and neonatal Fe status on placental nonheme and heme Fe transport proteins.
- To determine whether maternal or neonatal Fe status better predicts placental Fe transporter expression.
Main Methods:
- Evaluated mRNA expression and protein abundance of Fe transport proteins in placental tissue from 154 adolescents.
- Utilized regression analyses to associate maternal and neonatal Fe status with transporter expression.
- Assessed maternal serum ferritin (SF) and serum TfR.
Main Results:
- Maternal Fe status significantly associated with multiple placental nonheme and heme transporters.
- Neonatal Fe status related to only 3 heme transporters.
- Maternal Fe status consistently associated with the nonheme Fe importer transferrin receptor 1 (TfR1).
Conclusions:
- Maternal Fe insufficiency during pregnancy predicts increased expression of placental nonheme Fe transporter TfR1.
- Maternal iron status during pregnancy is a better predictor of placental iron transporter expression than neonatal iron status.
- Further research is needed on associations between placental heme Fe transporters and neonatal Fe status.
Abstract:
The placenta richly expresses nonheme and heme Fe transport proteins. To address the impact of maternal and neonatal Fe status and hepcidin on the regulation of these proteins, mRNA expression and protein abundance of nonheme and heme Fe transport proteins were evaluated in placental tissue from 154 adolescents. Regression analyses found maternal Fe status was significantly associated with multiple placental nonheme and heme transporters, whereas neonatal Fe status was related to only 3 heme transporters. Across statistical analyses, maternal Fe status was consistently associated with the placental nonheme Fe importer transferrin receptor 1 (TfR1). Protein abundance of TfR1 was related to midgestation maternal serum ferritin (SF) (β = -0.32; P = 0.005) and serum TfR (β = 0.25; P = 0.024). Protein abundance of the heme importer, proton-coupled folate transporter, was related to neonatal SF (β = 0.30; P = 0.016) and serum TfR (β = -0.46; P < 0.0001). Neonatal SF was also related to mRNA expression of the heme exporter feline leukemia virus subgroup C receptor 1 (β = -0.30; P = 0.004). In summary, maternal Fe insufficiency during pregnancy predicts increased expression of the placental nonheme Fe transporter TfR1. Associations between placental heme Fe transporters and neonatal Fe status require further study.-Best, C. M., Pressman, E. K., Cao, C., Cooper, E., Guillet, R., Yost, O. L., Galati, J., Kent, T. R., O'Brien, K. O. Maternal iron status during pregnancy compared with neonatal iron status better predicts placental iron transporter expression in humans.
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