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A novel cytofluorometric assay for the detection and quantification of glucose-6-phosphate dehydrogenase deficiency.

Shivang S Shah | Seidina A S Diakite | Karim Traore | Mahamadou Diakite | Dominic P Kwiatkowski | Kirk A Rockett | Thomas E Wellems | Rick M Fairhurst
Scientific reports | 2012

Glucose-6-phosphate dehydrogenase (G6PD) deficiency is an X-linked enzymopathy that affects hundreds of millions of people worldwide, conferring increased risk of neonatal jaundice and oxidant-induced hemolytic anemia. Screening and diagnosis of G6PD deficiency is currently performed using genetic or biochemical assays, the former being cost ineffective in populations with significant allelic heterogeneity, and the latter being limited in ability to detect female heterozygotes. Cytochemical assays can obviate these shortcomings, but at the expense of added technical complexity and labor. We describe here a simple, novel cytofluorometric method that extends the classic methemoglobin reduction test, assessing G6PD deficiency at the level of an individual erythrocyte. In preliminary testing in Malian children, there was strong concordance between our method and established genetic and biochemical techniques. The assay is robust and economical, and could serve as a screening method as well as a research tool, especially for high-throughput applications such as flow cytometry.

Pubmed ID: 22393475

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Associated grants

  • Agency: Wellcome Trust, United Kingdom
    Id: 090532
  • Agency: Medical Research Council, United Kingdom
    Id: G0600718
  • Agency: Medical Research Council, United Kingdom
    Id: G19/9

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RRID:SCR_012734

A research program of the NIA which focuses on neuroscience, aging biology, and translational gerontology. The central focus of the program's research is understanding age-related changes in physiology and the ability to adapt to environmental stress, and using that understanding to develop insight about the pathophysiology of age-related diseases. The IRP webpage provides access to other NIH resources such as the Biological Biochemical Image Database, the Bioinformatics Portal, and the Baltimore Longitudinal Study of Aging.

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