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The Use of Whole Genome and Exome Sequencing for Newborn Screening: Challenges and Opportunities for Population Health. | LitMetric

AI Article Synopsis

  • Newborn screening (NBS) aims to reduce disease burden in infants by identifying significant health conditions early, evolving from single tests to modern multiplex technologies for faster panel expansions.* ! -
  • Recent advancements in next-generation sequencing now allow for comprehensive genetic screening, moving from individual genes to whole exome and genome sequencing.* ! -
  • The article reviews the history of NBS, assesses the potential of whole genome sequencing, and discusses the challenges—technical, ethical, and societal—related to implementing these advancements.* !

Article Abstract

Newborn screening (NBS) is a population-based program with a goal of reducing the burden of disease for conditions with significant clinical impact on neonates. Screening tests were originally developed and implemented one at a time, but newer methods have allowed the use of multiplex technologies to expand additions more rapidly to standard panels. Recent improvements in next-generation sequencing are also evolving rapidly from first focusing on individual genes, then panels, and finally all genes as encompassed by whole exome and genome sequencing. The intersection of these two technologies brings the revolutionary possibility of identifying all genetic disorders in newborns, allowing implementation of therapies at the optimum time regardless of symptoms. This article reviews the history of newborn screening and early studies examining the use of whole genome and exome sequencing as a screening tool. Lessons learned from these studies are discussed, along with technical, ethical, and societal challenges to broad implementation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8326411PMC
http://dx.doi.org/10.3389/fped.2021.663752DOI Listing

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