Related Experiment Video
Updated: Jul 14, 2026

One-step Metabolomics: Carbohydrates, Organic and Amino Acids Quantified in a Single Procedure
Published on: June 25, 2010
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.
Abstract:
The Quebec Mass Urinary Screening Programme, initiated in 1971, has resulted in the screening of more than 2,500,000 newborns in the province of Quebec for 25 inherited Mendelian disorders divided into two groups. The first group concerns urea cycle disorders (citrullinaemia, hyperargininaemia, argininosuccinic aciduria), ketotic hyperglycinaemia, and organic acidurias (methylmalonic aciduria, glutaric aciduria type I, etc.); the second group relates to disorders of amino acid metabolism (cystathioninuria, prolidase deficiency, etc.) and transport (Fanconi syndrome, cystinurias, Hartnup syndrome, etc.). The main goal of the Programme is to detect and prevent these genetic diseases, some detectable only in urine, before the onset of clinical symptoms. A multiplex thin-layer chromatography methodology was developed, in which metabolites in urine are resolved and visualized by the sequential application of four different reagents to detect aminoacidopathies and organic acidurias. The technique is simple, reproducible, inexpensive and rapid, allowing the analysis of 500 samples daily by a single technician. The voluntary compliance of the parents is excellent, averaging 90% per year. Over the years, we have established a dynamic process, developing techniques or new reagents to detect as many treatable disorders as possible, now evaluating macromolecules associated with lysosomal storage disorders, mainly globotriaosylceramide (Gb3) for Fabry disease. We present here the methodology, infrastructure in place, results and recent statistics of the well-established Quebec Mass Urinary Screening Programme. We also report a study by tandem mass spectrometric analysis of urinary Gb3 in Fabry disease for the follow-up and monitoring of Fabry patients, as well as for its possible application to mass and high-risk screening programmes.

