Erythroblastosis, Fetal, Erythroblastosis Fetalis Due to Isoimmunization, Erythroblastosis Fetalis Due to RH Antibodies, Erythroblastosis Fetalis, Rh Disease
Conditions
Keywords
Hemolytic disease of the fetus and newborn, HDFN, Red blood cell alloimmunization
Brief summary
Up to 80% of infants with hemolytic disease due to maternal alloimmunization, treated with IUT, require at least one top-up transfusion for late anemia during the first 3 months of life. Erythropoietin deficiency is also considered as a possible contributing factor to late anemia and therefore we will assess the role of EPO (darbepoetin alfa) in the treatment of these infants.
Detailed description
The mainstay of antenatal treatment of fetal anemia due to red cell alloimmunization is (serial) IUT. The mainstay of postnatal treatment in HDN is (1) intensive phototherapy and exchange transfusion to treat hyperbilirubinemia and prevent kernicterus, and (2) top-up transfusions to treat anemia. Up to 80% of infants with HDN treated with IUT require at least one top-up transfusion for late anemia during the first 3 months of life. Several risk factors for late anemia have been reported, including serial IUT (due to bone marrow suppression), severity of HDN, reduced use of exchange transfusions during the neonatal period and reduced survival of transfused red blood cells. Finally, erythropoietin deficiency is also considered as a possible contributing factor to late anemia. EPO has been increasingly used in neonates to prevent or reduce neonatal anemia without short or long-term adverse effects. Several small studies and casuistic reports suggest that neonates with HDN may benefit from treatment with EPO to reduce the risk of delayed anemia and subsequent top-up transfusions. However, other authors found that EPO may be less effective than expected. Due to the lack of evidence, routine use of EPO is currently not recommended. To determine a role for EPO in this group of patients, a well-designed randomized controlled clinical trial of sufficient sample size is required. Potentially, EPO stabilizes the hemoglobin levels of these infants and thus prevents top-up transfusions and extra admissions, creating a more stable and natural postnatal course for patients with HDN.
Interventions
Darbepoetin alfa dosage 10microg/kg once a week for 8 weeks
Sponsors
Study design
Intervention model description
RCT with unblinded treatment allocation 1:1 ratio. Either treatment with darbepoetin alfa or standard care. No placebo.
Eligibility
Inclusion criteria
* all (near)-term neonates (gestational age ≥ 35 weeks) admitted to the Leiden University Medical Center (LUMC) with HDFN, treated with IUT.
Exclusion criteria
* none.
Design outcomes
Primary
| Measure | Time frame | Description |
|---|---|---|
| Number of top-up transfusions required per infant | First 3 months of life | Number of top-up transfusions required per infant |
Secondary
| Measure | Time frame | Description |
|---|---|---|
| The percentage of infants requiring a top-up transfusion | First 3 months of life | The percentage of infants requiring a top-up transfusion |
| Number of days of admission for top-up transfusions | First 3 months of life | Number of days of admission for top-up transfusions |
| Occurrence of hypertension | 8 weeks (treatment course) | The percentage of infants with a systolic blood pressure ≥ 2 SD above age adjusted mean systolic blood pressure during treatment |
| Occurrence of high ferritin levels | 8 weeks (treatment course) | The percentage of infants with ferritin levels \>200 μg/L during treatment |
Other
| Measure | Time frame | Description |
|---|---|---|
| Long-term neurodevelopmental outcome | 2 years of age | Exploratory outcome; Long-term neurodevelopmental outcome at 2 years of age using the BSID-III test |
Countries
Netherlands