Quebec neonatal mass urinary screening programme: from micromolecules to macromolecules

C Auray-Blais1, D Cyr, R Drouin

  • 1Service of Genetics, Department of Pediatrics, Faculty of Medicine and Health Sciences, Université de Sherbrooke, 3001, 12th Avenue North, Sherbrooke, QC, Canada, J1H 5N4. christiane.auray-blais@usherbrooke.ca

Insights

The Quebec Mass Urinary Screening Programme has screened over 2.5 million newborns for 25 inherited disorders using multiplex thin-layer chromatography. This cost-effective method enables early detection and prevention of serious genetic diseases.

Area of Science:

  • Medical Genetics
  • Biochemistry
  • Public Health

Background:

  • The Quebec Mass Urinary Screening Programme, established in 1971, screens newborns for inherited Mendelian disorders.
  • The program targets urea cycle disorders, organic acidurias, and amino acid metabolism/transport disorders.

Purpose of the Study:

  • To present the methodology, infrastructure, results, and statistics of the Quebec Mass Urinary Screening Programme.
  • To highlight the development of techniques for detecting treatable genetic disorders, including lysosomal storage disorders like Fabry disease.
  • To report on tandem mass spectrometric analysis of urinary Gb3 for Fabry disease monitoring and potential mass screening.

Main Methods:

  • Multiplex thin-layer chromatography (TLC) with sequential reagent application for metabolite resolution and visualization.
  • Analysis of aminoacidopathies and organic acidurias, detecting disorders detectable only in urine.
  • Tandem mass spectrometry for urinary globotriaosylceramide (Gb3) analysis in Fabry disease.

Main Results:

  • Screened over 2,500,000 newborns for 25 inherited Mendelian disorders.
  • Developed a simple, reproducible, inexpensive, and rapid TLC methodology capable of analyzing 500 samples daily.
  • Achieved excellent voluntary parent compliance, averaging 90% annually.

Conclusions:

  • The Quebec Mass Urinary Screening Programme effectively detects and prevents genetic diseases through early diagnosis.
  • Continuous development of techniques enhances the detection of treatable disorders, expanding screening capabilities.
  • Tandem mass spectrometry shows promise for Fabry disease patient monitoring and potential integration into mass screening programs.