Two co-inherited hemoglobin variants revealed by capillary electrophoresis during quantification of glycated hemoglobin

Author:

Antonello Giovanni1,Lo Monaco Carlo1,Napoli Patrizia1,Solimando Daniela1,Curcio Cristina2,Barberio Giuseppina3,Maoggi Sauro4,Ivaldi Giovanni5,Nigra Marco1

Affiliation:

1. Laboratorio Analisi, Ospedale Martini, ASL Città di Torino , Torino , Italy

2. Laboratorio Genetica, Fondazione Ca’Granda, Ospedale Maggiore Policlinico , Milan , Italy

3. U.O.C. Medicina di Laboratorio, Ospedale di Treviso, ULSS2 “Marca trevigiana” , Treviso , Italy

4. Sebia-Italia Bagno a Ripoli , Firenze , Italy

5. Laboratorio Genetica Umana, Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS) Giannina Gaslini , Genova , Italy

Abstract

Abstract Objectives The observation of numerous new structural defects in hemoglobin (Hb) has often been linked to the evolution and development of device technologies used for the separation and quantification of hemoglobin components. However, the increased use of preventive tests for hemoglobinopathies and separative methods to quantify glycated hemoglobin (HbA1c) also contributed to these observations, as demonstrated by the case described here. Our aim is to emphasize that different separative method can provide more useful information in patient management. Methods A 64-year-old diabetic woman of Moroccan descent was examined in the context of HbA1c monitoring. The test was performed using high performance liquid chromatography (HPLC) and capillary electrophoresis (CE) systems. Molecular characterization was performed by direct sequencing of the β and α globin genes. Results The two methods used showed the presence of an anomalous fraction identified as HbS, already observed previously, but only through CE it was possible to observe the presence of another variant and its hybrid components. Direct sequencing of β and α globin genes confirmed heterozygous HbS [β6 (A3) Glu→Val; HBB: c.20A>T] and allowed to identify a mutation on the α 2, [α114 (GH2) Pro→Leu gene; HBA2: c.344C>T] corresponding to the rare Hb Nouakchott variant. Conclusions The two Hb variants highlighted by the EC and the molecular characterization therefore allowed adequate advice, the correct assessment of HbA1c and metabolic status and therefore better clinical management of the patient. The availability of different instruments in the same laboratory, confirming situations of diagnostic uncertainty, represents a valuable opportunity that should be encouraged.

Publisher

Walter de Gruyter GmbH

Subject

Biochemistry (medical),Clinical Biochemistry,General Medicine

Reference21 articles.

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4. Piel, FB, Patil, AP, Howes, RE, Nyangiri, OA, Gething, PW, Dewi, M, et al.. Global epidemiology of sickle haemoglobin in neonates: a contemporary geostatistical model-based map and population estimates. Lancet 2013;381:142–51. https://doi.org/10.1016/s0140-6736(12)61229-x.

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