Issues in Newborn Screening
- 1 June 2003
- journal article
- research article
- Published by Mary Ann Liebert Inc in Genetic Testing
- Vol. 7 (2) , 131-134
- https://doi.org/10.1089/109065703322146812
Abstract
Newborn screening aims at the earliest possible recognition of disorders so that intervention with effective treatment can prevent the most serious consequences of the disorder. However, of several thousand known genetic disorders, therapy is presently available for only a small proportion of them. Newborn screening was first applied to phenylketonuria (PKU). Presently, newborn screening programs have been implemented in 26 countries for different diseases. However, potential problems in newborn screening programs that make implementation of newborn screening programs difficult include quality assessment, concerns about professional and technical competence, and ethical considerations. It has been shown that in the process from sampling the newborn to reporting of the screening results most errors are made in the pre- and post-analytical phases. It appears that much more could be done for the fetus if genetic screening and diagnostics could be accomplished early in pregnancy rather than after birth.Keywords
This publication has 20 references indexed in Scilit:
- DNA microarray technology for neonatal screeningActa Paediatrica, 2007
- Neonatal screening: ethical aspectsActa Paediatrica, 2007
- The future of newborn screening belongs to obstetriciansActa Paediatrica, 2007
- Quality evaluation of newborn screening programsActa Paediatrica, 2007
- Fast Technology Drives New World of Newborn ScreeningScience, 2001
- Categorizing genetic tests to identify their ethical, legal, and social implicationsAmerican Journal of Medical Genetics, 2001
- Newborn Screening, Informed Consent, and Future Use of Archived Tissue SamplesGenetic Testing, 2001
- Breastfeeding in phenylketonuriaActa Paediatrica, 1999
- Guidelines for neonatal screening programs for congenital hypothyroidismActa Paediatrica, 1999
- Chemical Amplification: Continuous-Flow PCR on a ChipScience, 1998