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A combined approach for β-thalassemia based on gene therapy-mediated adult hemoglobin (HbA) production and fetal hemoglobin (HbF) induction
被引:0
|作者:
Cristina Zuccato
Laura Breda
Francesca Salvatori
Giulia Breveglieri
Sara Gardenghi
Nicoletta Bianchi
Eleonora Brognara
Ilaria Lampronti
Monica Borgatti
Stefano Rivella
Roberto Gambari
机构:
[1] University of Ferrara,Department of Biochemistry and Molecular Biology, Section of Molecular Biology
[2] Children’s Cancer and Blood Foundation Laboratories,Department of Pediatrics, Division of Hematology
[3] Weill Cornell Medical College,Oncology
[4] Cornell University,undefined
来源:
Annals of Hematology
|
2012年
/
91卷
关键词:
β-thalassemia;
Gene therapy;
Lentiviral vectors;
HbF induction;
Erythroid progenitor cells;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Gene therapy might fall short in achieving a complete reversion of the β-thalassemic phenotype due to current limitations in vector design and myeloablative regimen. Following gene transfer, all or a large proportion of erythroid cells might express suboptimal levels of β-globin, impairing the therapeutic potential of the treatment. Our aim was to evaluate whether, in absence of complete reversion of the β-globin phenotype upon gene transfer, it is possible to use fetal hemoglobin induction to eliminate the residual α-globin aggregates and achieve normal levels of hemoglobin. Transgenic K562 cell lines and erythroid precursor cells from β039-thalassemia patients were employed. Gene therapy was performed with the lentiviral vector T9W. Induction of fetal hemoglobin was obtained using mithramycin. Levels of mRNA and hemoglobins were determined by qRT-PCR and HPLC. First, we analyzed the effect of mithramycin on K562 transgenic cell lines harboring different copies of a lentiviral vector carrying the human β-globin gene, showing that γ-globin mRNA expression and HbF production can be induced in the presence of high levels of β-globin gene expression and HbA accumulation. We then treated erythroid progenitor cells from β-thalassemic patients with T9W, which expresses the human β-globin gene and mithramycin separately or in combination. When transduction with our lentiviral vector is insufficient to completely eliminate the unpaired α-globin chains, combination of β-globin gene transfer therapy together with fetal hemoglobin induction might be very efficacious to remove the excess of α-globin proteins in thalassemic erythroid progenitor cells.
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页码:1201 / 1213
页数:12
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