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Hydroxyurea treatment for sickle cell anemia during pregnancy and lactation: Current evidence and knowledge gaps
Min Dong1,2, Russell E Ware2,3, André Dallmann4
1Division of Clinical Pharmacology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA.
Insights
Hydroxyurea may be safe for pregnant women with sickle cell anemia (SCA). Further research using novel methods is needed to determine safe dosing for mothers and infants, balancing treatment benefits against risks.
Area of Science:
- Hematology
- Maternal-Fetal Medicine
- Pharmacology
Background:
- Sickle cell anemia (SCA) is a serious genetic disorder impacting high-risk pregnancies.
- SCA management has improved, allowing more patients to consider parenthood.
- Hydroxyurea, safe for non-pregnant individuals, is currently contraindicated in pregnancy due to theoretical concerns.
Purpose of the Study:
- To evaluate the safety and exposure of hydroxyurea during pregnancy and lactation in SCA patients.
- To clarify the correlation between hydroxyurea exposure levels and pregnancy outcomes.
- To explore novel approaches for assessing fetal and maternal exposure to hydroxyurea.
Main Methods:
- Physiologically based pharmacokinetic (PBPK) modeling.
- Ex vivo human placental cotyledon perfusion assay.
- Integration of animal data with human studies.
Main Results:
- Clinical experience with hydroxyurea in pregnancy shows inconsistent fetal/infant adverse effects.
- The relationship between hydroxyurea exposure and pregnancy outcomes remains unclear.
- Novel modeling and assay techniques offer insights into fetal exposure.
Conclusions:
- Systematic evaluation of hydroxyurea exposure and safety during pregnancy/lactation is crucial.
- PBPK modeling and placental perfusion assays can elucidate exposure dynamics.
- Research may define safe hydroxyurea dosing regimens, balancing benefits against risks for mothers and infants.
Abstract:
Sickle cell anemia (SCA) is a life-threatening genetic condition contributing to high-risk pregnancies affecting both the mother and fetus. With improved management of children with SCA, this life-threatening hematological disorder has evolved into a chronic disease of adults, and consequently parenthood has now become a possible and important life goal for many patients. Providing continuous management with healthy red blood cell function and avoiding SCA-associated complications, such as pain crises, acute chest syndrome, and stroke, are crucial for a healthy pregnancy. Despite its excellent safety profile in non-pregnant adults and children, and based on theoretical concerns derived from data using animal models and supraphysiological dosing, hydroxyurea is currently contraindicated for pregnant and lactating women with SCA. Clinical experience of hydroxyurea use during pregnancy is increasingly reported, however, and has shown inconsistent results of fetal or infant adverse effects. How the hydroxyurea exposure level may correlate with pregnancy outcomes is still unclear. Accordingly, efforts should be made to systemically evaluate exposure and safety of hydroxyurea treatment during pregnancy and lactation. Novel approaches such as physiologically based pharmacokinetic (PBPK) modeling, coupled with the ex vivo human placental cotyledon perfusion assay, provide opportunities to understand hydroxyurea exposure not only in pregnant women but also in the developing fetus. Combined with animal data, research using these approaches might be able to define safe and effective hydroxyurea dosing regimens for pregnant and lactating women with SCA, when the benefits of continuing hydroxyurea treatment likely outweigh the risks of non-treatment, by avoiding substantial morbidity and even mortality for both mothers and infants.
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