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Prenatal Diagnosis of β-Thalassemia/Hb E by Hemoglobin Typing Compared to DNA Analysis

Supatra Sirichotiyakul, Rattika Saetung, Torpong Sanguansermsri

Open publisher page 7 citations

Abstract

To determine the accuracy of prenatal diagnosis of beta-thalassemia (beta-thal)/Hb E disease using fetal hemoglobin (Hb) typing compared to DNA analysis, automated DNA sequencing was performed on 98 blood samples from fetuses diagnosed as beta-thal/Hb E by Hb typing. Thirteen samples from homozygous Hb E fetuses were also collected. The Hb patterns obtained by high performance liquid chromatography (HPLC) from both groups were analyzed. The codon 26 (G>A) mutation was identified in all 98 samples. The beta-globin gene mutation was identified in 97 cases by DNA sequencing and the 3.4 kb deletion by polymerase chain reaction (PCR) in one case. The result from DNA analysis was in agreement with the HPLC result in all samples. In beta-thal/Hb E fetuses, the Hb A level was 0-0.3% and mean Hb A(2)(E) level was 1.3 +/- 0.3%. In homozygous Hb E fetuses, the Hb A level was 0% and mean Hb A(2)(E) level was 2.48 +/- 0.6%. The Hb pattern obtained by HPLC on fetal blood is a reliable and accurate method for prenatal diagnosis of this disease.

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What this paper is about

To determine the accuracy of prenatal diagnosis of beta-thalassemia (beta-thal)/Hb E disease using fetal hemoglobin (Hb) typing compared to DNA analysis, automated DNA sequencing was performed on 98 blood samples from fetuses diagnosed as beta-thal/Hb E by Hb typing. Thirteen samples from homozygous Hb E fetuses were also collected. The Hb patterns obtained by high performance liquid chromatography (HPLC) from both groups were analyzed. The codon 26 (G>A) mutation was identified in all 98 samples. The beta-globin gene mutation was identified in 97 cases by DNA sequencing and the 3.4 kb deletion by polymerase chain reaction (PCR) in one case. The result from DNA analysis was in agreement with the HPLC result in all samples. In beta-thal/Hb E fetuses, the Hb A level was 0-0.3% and mean Hb A(2)(E) level was 1.3 +/- 0.3%. In homozygous Hb E fetuses, the Hb A level was 0% and mean Hb A(2)(E) level was 2.48 +/- 0.6%. The Hb pattern obtained by HPLC on fetal blood is a reliable and accurate method for prenatal diagnosis of this disease.

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Available abstract

To determine the accuracy of prenatal diagnosis of beta-thalassemia (beta-thal)/Hb E disease using fetal hemoglobin (Hb) typing compared to DNA analysis, automated DNA sequencing was performed on 98 blood samples from fetuses diagnosed as beta-thal/Hb E by Hb typing. Thirteen samples from homozygous Hb E fetuses were also collected. The Hb patterns obtained by high performance liquid chromatography (HPLC) from both groups were analyzed. The codon 26 (G>A) mutation was identified in all 98 samples. The beta-globin gene mutation was identified in 97 cases by DNA sequencing and the 3.4 kb deletion by polymerase chain reaction (PCR) in one case. The result from DNA analysis was in agreement with the HPLC result in all samples. In beta-thal/Hb E fetuses, the Hb A level was 0-0.3% and mean Hb A(2)(E) level was 1.3 +/- 0.3%. In homozygous Hb E fetuses, the Hb A level was 0% and mean Hb A(2)(E) level was 2.48 +/- 0.6%. The Hb pattern obtained by HPLC on fetal blood is a reliable and accurate method for prenatal diagnosis of this disease.

Key concepts: Thalassemia, Typing, Hemoglobin, Hemoglobin A2, Hemoglobin variants, Prenatal diagnosis, Hemoglobinopathy, Beta thalassemia

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