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The Alberta Newborn Screening Approach for Sickle Cell Disease: The Advantages of Molecular Testing
Janet R Zhou1,2, Ross Ridsdale1,3, Lauren MacNeil1,3
1Newborn Metabolic Screening and Biochemical Genetics Laboratory, University of Alberta Hospital, Alberta Precision Laboratories, Edmonton, AB T6G 2B7, Canada.
Insights
Early newborn screening for sickle cell disease (SCD) in Alberta identified a local incidence of 1:2400 births. The screening algorithm effectively detects SCD in newborns, even those who have received blood transfusions.
Area of Science:
- Genetics
- Pediatrics
- Public Health
Background:
- Sickle cell disease (SCD) is an inherited blood disorder with significant health implications.
- Early diagnosis and intervention are crucial for reducing adverse outcomes in SCD.
- Newborn screening (NBS) for SCD was implemented in Alberta, Canada, in April 2019.
Purpose of the Study:
- To evaluate the performance of SCD newborn screening in Alberta over the first 19 months.
- To describe an adapted screening approach for infants who received red blood cell transfusions before NBS specimen collection.
Main Methods:
- Retrospective analysis of SCD screening data from April 2019 for 19 months.
- Analysis of hemoglobins from dried blood spots using the Bio-Rad™ VARIANT nbs analyzer.
- Targeted sequencing of the beta-globin gene (HBB) in transfused infants.
Main Results:
- A local SCD incidence of approximately 1:2400 births was identified (43 positive screens, 34 confirmed cases out of 80,314 infants).
- Sickle cell trait carrier frequency was 1:130 (608 infants).
- The screening algorithm successfully detected affected newborns regardless of transfusion status, with results delivered within 10 days for non-transfused and within 21 ± 10 days for transfused infants.
Conclusions:
- Alberta's newborn screening program effectively identifies infants with sickle cell disease.
- The developed screening algorithm is robust and accommodates infants who have undergone blood transfusions.
- Early detection through NBS is vital for managing sickle cell disease and improving patient outcomes.
Abstract:
Sickle cell disease (SCD), a group of inherited red blood cell (RBC) disorders caused by pathogenic variants in the beta-globin gene (HBB), can cause lifelong disabilities and/or early mortality. If diagnosed early, preventative measures significantly reduce adverse outcomes related to SCD. In Alberta, Canada, SCD was added to the newborn screening (NBS) panel in April 2019. The primary conditions screened for are sickle cell anemia (HbS/S), HbS/C disease, and HbS/β thalassemia. In this study, we retrospectively analyzed the first 19 months of SCD screening performance, as well as described our approach for screening of infants that have received a red blood cell transfusion prior to collection of NBS specimen. Hemoglobins eluted from dried blood spots were analyzed using the Bio-Rad™ VARIANT nbs analyzer (Bio-Rad Laboratories, Inc., Hercules, CA, USA). Targeted sequencing of HBB was performed concurrently in samples from all transfused infants. During the period of this study, 43 of 80,314 screened infants received a positive NBS result for SCD, and of these, 34 were confirmed by diagnostic testing, suggesting a local SCD incidence of 1:2400 births. There were 608 infants with sickle cell trait, resulting in a carrier frequency of 1:130. Over 98% of non-transfused infants received their NBS results within 10 days of age. Most of the 188 transfused infants and 2 infants who received intrauterine transfusions received their final SCD screen results within 21 ± 10 d of birth. Our SCD screening algorithm enables detection of affected newborns on the initial NBS specimen, independent of the reported blood transfusion status.
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