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Published on: July 22, 2011
Newborn Screening in the Diagnosis of Primary Immunodeficiency
1Pediatrics Institute, Emory University and Children's Healthcare of Atlanta, Atlanta, GA, USA. lkobryn@emory.edu.
Insights
Newborn screening for severe combined immune deficiency (SCID) uses molecular testing for early diagnosis. This approach improves outcomes for infants and drives development of screening for other inborn errors of immunity.
Area of Science:
- Immunology
- Genetics
- Neonatal Medicine
Background:
- Severe combined immune deficiency (SCID) is the first inborn error of immunity (IEI) detected via population screening.
- SCID screening utilizes molecular testing on DNA from newborn dried blood spots, a novel approach.
Purpose of the Study:
- To provide an overview of newborn screening for SCID.
- To discuss follow-up testing, early intervention, and long-term care for SCID.
- To highlight the impact of SCID screening on developing tests for other IEIs.
Main Methods:
- Population screening for SCID using molecular testing.
- Evaluation of early intervention effects on infant outcomes.
- Adaptation of methodology for screening other monogenic defects like spinal muscular atrophy.
Main Results:
- SCID newborn screening enables measurement of population prevalence.
- Early diagnosis and intervention significantly improve outcomes for affected infants.
- Success of SCID screening stimulates development of molecular tests for other IEIs.
Conclusions:
- Advances in clinical care and therapeutics underscore the need for early diagnosis of IEIs.
- Early diagnosis and prompt treatment reduce morbidity and mortality, improving quality of life.
- Challenges remain in establishing clinical consensus on diagnostic testing and best practices for immune reconstitution.
Abstract:
Newborn screening for severe combined immune deficiency (SCID) is the first inborn error of immunity (IEI) to be detected through population screening. It also represents the first newborn screening test to utilize molecular testing on DNA from newborn dried blood spots. Newborn screening for SCID has provided opportunities to measure the population prevalence of this disorder and evaluate the effect of early interventions on the overall outcomes in affected infants. The success of SCID newborn screening has increased interest in developing and implementing molecular testing for other clinically significant inborn errors of immunity. This methodology has been adapted to screen for another monogenic inborn defect, spinal muscle atrophy. Advances in the clinical care and new therapeutics for many inborn errors of immunity support the need for early diagnosis and prompt institution of therapies to reduce morbidity and mortality. Early diagnosis may also improve the quality of life for affected patients. This article provides an overview of newborn screening for SCID, recommended steps for follow-up testing and early intervention as well as long-term follow-up. Numerous challenges remain, including the development of clinical consensus regarding confirmatory and diagnostic testing, early interventions, and best practices for immune reconstitution in affected infants.
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