Validation and Implementation of a Highly Sensitive and Efficient Newborn Screening Assay for Mucopolysaccharidosis

Heather Bilyeu1, Jon Washburn2, Lacey Vermette1

  • 1Missouri State Public Health Laboratory, 101 N. Chestnut Street, PO Box 570, Jefferson City, MO 65102-0570, USA.

Insights

Newborn screening for Mucopolysaccharidosis Type II (Hunter syndrome) is now feasible using a validated fluorometric assay for iduronate-2-sulfatase (IDS) activity in dried blood spots. This method successfully identified two infants with severe Hunter syndrome in over 146,000 screened newborns.

Area of Science:

  • Biochemistry
  • Genetics
  • Newborn Screening

Background:

  • Mucopolysaccharidosis Type II (Hunter syndrome) is a lysosomal storage disorder due to iduronate-2-sulfatase (IDS) deficiency.
  • MPS II meets criteria for newborn screening, but lacks sufficient prospective population data.
  • Current diagnostic methods for MPS II are not suitable for widespread newborn screening.

Purpose of the Study:

  • To validate and implement a fluorometric assay for measuring IDS activity in newborn dried blood spots (DBS).
  • To assess the feasibility and effectiveness of MPS II screening in a large newborn population.
  • To provide data supporting the inclusion of MPS II in newborn screening panels.

Main Methods:

  • Analytical validation of the IDS fluorometric assay, including linearity, sensitivity, and precision.
  • Clinical validation using over 5000 normal newborn DBS and seven confirmed MPS II patient specimens.
  • Prospective population screening of 146,954 newborns from November 2018 to June 2020.

Main Results:

  • The fluorometric IDS assay demonstrated robust analytical performance.
  • The assay successfully identified two newborns with severe Hunter syndrome.
  • A presumptive positive rate of 0.022% was observed during the initial 18 months of screening.

Conclusions:

  • The validated fluorometric IDS assay is suitable for newborn screening of MPS II.
  • Implementation of this assay enables early detection of Hunter syndrome in newborns.
  • The findings support the expansion of newborn screening programs to include MPS II.

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