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1.
Blood Cells Mol Dis ; 69: 102-106, 2018 03.
Article in English | MEDLINE | ID: mdl-29162392

ABSTRACT

Limited information is available on the hematological characterization of the α-thalassemia carrier in pediatric age. The objective of this report was to evaluate the red cell indices according to the α-globin genotype in a cohort of children evaluated in Sardinia. Moreover, we verified the frequency of different α-globin genotypes in this cohort. A total of 453 subjects were investigated for hematological indices and for the most common α-globin defects present in Sardinia. Of them, 352 with HbA2≤3.2%, and no iron deficiency anemia were taken into consideration to evaluate the red cell indices according to the α-globin genotype in pediatric age. A total of 11 different α-genotypes were detected, confirming the wide heterogeneity of α-thalassemia in Sardinia. Moreover, our results showed that the hematological parameters in normal children may be conditioned by the clinically occult coinheritance of mild α-thalassemia alleles as already described in the adult population while microcytosis and hypocromia in children without iron deficiency should suggest the coexistence of two α-globin defects. We concluded that recognizing the α-globin gene mutations for a particular population with their particular red cell indices may help pediatricians to perform a correct diagnosis distinguishing among physiological and pathological types of microcytosis and hypocromia.


Subject(s)
Genetic Association Studies , Genotype , Hematopoiesis/genetics , Phenotype , alpha-Globins/genetics , Adolescent , Biomarkers , Child , Child, Preschool , Erythrocyte Indices , Female , Fetal Hemoglobin/genetics , Genetic Predisposition to Disease , Humans , Infant , Male , alpha-Thalassemia/blood , alpha-Thalassemia/diagnosis , alpha-Thalassemia/genetics
2.
Blood Cells Mol Dis ; 64: 30-32, 2017 05.
Article in English | MEDLINE | ID: mdl-28342932

ABSTRACT

α-thalassemia carriers are common in Mediterranean regions, particularly in the Sardinian population. Their haematological phenotype is characterized by reduced MCV and/or MCH with normal or slightly reduced HbA2 levels and normal HbF. Krüppel-like factor 1 (KLF1) is a pleiotropic erythroid transcription factor that is essential for haematopoiesis. Mutations in the KLF1 gene trigger a series of benign human red blood phenotypes, such as an increase in HbA2 and HBF. Recently, it has been found that KLF1 mutations were a frequent cause of borderline HbA2 levels in a group of Sardinian subjects. Here, we found that KLF1 mutations modulate the phenotype in a cohort of α-thalassemia carriers.


Subject(s)
Fetal Hemoglobin , Hemoglobin A2 , Heterozygote , Kruppel-Like Transcription Factors/genetics , Mutation , alpha-Thalassemia , Adolescent , Adult , Female , Fetal Hemoglobin/genetics , Fetal Hemoglobin/metabolism , Hemoglobin A2/genetics , Hemoglobin A2/metabolism , Humans , Male , Middle Aged , alpha-Thalassemia/blood , alpha-Thalassemia/genetics
3.
Acta Haematol ; 135(4): 193-9, 2016.
Article in English | MEDLINE | ID: mdl-26794457

ABSTRACT

BACKGROUND: The increase in HbA2 is the most important parameter for the identification of thalassemia carriers. However, in routine screening for hemoglobinopathies, some cases are difficult to classify because the level of HbA2 is not typically elevated. In this work, we report the results of a molecular investigation on a cohort of subjects with borderline HbA2. METHODS: All subjects with a ß-thalassemia carrier partner and a borderline percentage level of HbA2 were investigated for the presence of a pathological mutation in the ß-globin gene. All negative subjects were screened for both the KLF1 mutation and the presence of ααα/ or αααα/ alleles. The subjects with reduced MCV and/or MCH were also screened for deletional and nondeletional α-globin gene defects. RESULTS: Various ß-globin mutations and KLF1 gene defects are the most common genetic determinants responsible for this phenotype in our population. CONCLUSION: KLF1 mutations are important in a screening program for hemoglobinopathies. An increase in HbF in association with borderline HbA2 levels is a useful but not exclusive marker that suggests the investigation of this gene. On the basis of our findings, we are able to suggest the molecular procedure to use in a population characterized by a high prevalence of thalassemia carriers.


Subject(s)
Hemoglobin A2/genetics , beta-Thalassemia/diagnosis , Humans , Mutation , alpha-Globins/genetics , alpha-Thalassemia/genetics , beta-Globins/genetics
5.
Hemoglobin ; 36(3): 299-304, 2012.
Article in English | MEDLINE | ID: mdl-22428534

ABSTRACT

Hb Taybe [α38(C3) or α39(C4) Thr→0 (α1)] is an unstable hemoglobin (Hb) variant caused by a deletion of a threonine residue at codon 39 of the α1-globin chain. Usually asymptomatic or with minimal hematological abnormalities in the heterozygous state, Hb Taybe becomes clinically evident in compound heterozygosity with α-thalassemia (α-thal) or in homozygous patients. To date, Hb Taybe has been described in Israeli-Arab and Greek individuals. We report, for the first time, a patient with chronic hemolytic anemia due to the presence of Hb Taybe in trans to the α2 initiation codon mutation ATG>ACG in an Italian child. Hb Taybe was not evident at Hb analysis with cellulose acetate electrophoresis and high performance liquid chromatography (HPLC). Globin biosynthetic studies revealed an α/ß-globin ratio in the range of ß-thal trait. Consequently, an investigation of the α- and ß-globin genes was requested in order to avoid missing any rare globin chain variant and to offer accurate genetic counseling.


Subject(s)
Hemoglobins, Abnormal/genetics , Sequence Deletion , Threonine/genetics , alpha-Globins/genetics , Anemia, Hemolytic/genetics , Anemia, Hemolytic/pathology , Base Sequence , Child, Preschool , Chronic Disease , Codon, Initiator/genetics , DNA Mutational Analysis , Humans , Italy , Male , Mutation
8.
Haematologica ; 94(10): 1445-8, 2009 Oct.
Article in English | MEDLINE | ID: mdl-19794088

ABSTRACT

Ten patients with thalassemia intermedia with variable severity and apparent simple heterozygosis for beta0 39 C>T nonsense mutation were submitted to clinical, hematologic and molecular studies. The presence of an unknown molecular defect (silent beta-thalassemia) unlinked to the beta cluster interacting with the heterozygous beta thalassemia, was previously postulated in these families. Analysis of the alpha globin gene cluster with PCR-based methods (MLPA, GAP-PCR, digestion with restriction enzymes) detected complex rearrangements in the alpha cluster. A duplication of the alpha globin gene locus, including the upstream regulatory region, was present in all the patients, associated in some of them with deletion or non-deletion alpha thalassemia. The variability of the clinical phenotype correlates with the degree of the globin chain imbalance. The presence of alpha globin cluster duplication should be considered in patients heterozygote for beta-thalassemia with thalassemia intermedia phenotype and in the carriers of suspected silent beta thalassemia.


Subject(s)
Gene Duplication , Genome-Wide Association Study , Heterozygote , alpha-Globins/genetics , beta-Thalassemia/genetics , Adolescent , Adult , Child, Preschool , Female , Genome-Wide Association Study/methods , Humans , Male , Middle Aged , Pedigree , beta-Thalassemia/diagnosis
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