Literature DB >> 27535164

Hb A1c Determination by Capillary Electrophoresis is an Efficient Method for Detecting β-Thalassemias and Hemoglobin Variants.

Juan A Orts1, Ángel Zúñiga2, Yanis Bello2, Aleix B Fabregat1, Ana I Vicente3.   

Abstract

Glycated hemoglobin (Hb A1c) determination by multicapillary zone electrophoresis (MZE) can additionally be used to detect Hb A2, Hb F and most common hemoglobin (Hb) variants. We assessed the effectiveness of this method for detecting β-thalassemia (β-thal), δβ-thalassemia (δβ-thal) and most common Hb variants. Moreover, Hb F/Hb A2 is evaluated as an index for discriminating between β- and δβ-thal traits. The theoretical β-thalassemia major (β-TM) birth rate in our healthcare area is calculated and contrasted with real data. A MZE technique was used for Hb A1c measurements in 27,724 patients. Previous criteria for carrier detection were established and subsequently confirmed by molecular biology techniques. Positive predictive value (PPV) was 100.0%. The prevalence of β-thal trait (including δβ-thal) was 0.34%. The most prevalent mutations (estimated per 100,000 population) were HBB: c.118C > T (57.7%), HBB: c.93-21G>A (50.5%), HBB: c.92 + 1G > A (43.3%), HBB: c.92 + 6T > C (32.5%) and HBB: c.20delA (18.0%) for β-thalassemias, and Hb S (HBB: c.20A > T) (32.5%) and Hb J-Baltimore (HBB:c.3880T>A) (28.9%) for Hb variants. We found a paradoxical result between the theoretical β-TM birth rate and real data. We calculated an optimal Hb F/Hb A2 index cutoff of 0.71 for discriminating between β- and δβ-thal traits. This method is highly cost-effective for detecting β-thalassemias and common Hb variants. Prevalence results match previous data for the Spanish population. Heterogeneity of mutations in Spain has markedly increased as a consequence of migration. The Hb F/Hb A2 index cutoff could be used to predict δβ-thal trait.

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Keywords:  Hb A; Hb F; diabetes mellitus (DM); electrophoresis; glycosylated hemoglobin (Hb A1c); hemoglobinopathies; sickle cell trait; β-Thalassemia (β-thal); δβ-thalassemia (β-thal)

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Year:  2016        PMID: 27535164     DOI: 10.1080/03630269.2016.1224767

Source DB:  PubMed          Journal:  Hemoglobin        ISSN: 0363-0269            Impact factor:   0.849


  1 in total

1.  Value of DNA testing in the diagnosis of sickle-cell anemia in childhood in an environment with a high prevalence of other causes of anemia.

Authors:  Gloire Mbayabo; Paul Lumbala Kabuyi; Mamy Ngole; Aimé Lumaka; Valerie Race; Diane Maisin; Damien Gruson; Gert Matthijs; Tite Mikobi Minga; Koenraad Devriendt; Chris Van Geet; Prosper Lukusa Tshilobo
Journal:  J Clin Lab Anal       Date:  2022-07-12       Impact factor: 3.124

  1 in total

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