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Correction of β-thalassemia by CRISPR/Cas9 editing of the α-globin locus in human hematopoietic stem cells

Blood Adv. 2021-03; 
Giulia Pavani, Anna Fabiano, Marine Laurent, Fatima Amor, Erika Cantelli, Anne Chalumeau, Giulia Maule, Alexandra Tachtsidi, Jean-Paul Concordet, Anna Cereseto, Fulvio Mavilio, Giuliana Ferrari, Annarita Miccio, Mario Amendola
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Mammalian Expression To generate the double reporter AAV, we substituted the βAS3 gene with the human low-affinity nerve growth factor receptor cDNA. Each cassette was synthetized by Genscript (Piscataway, NJ). Get A Quote

摘要

β-thalassemias (β-thal) are a group of blood disorders caused by mutations in the β-globin gene (HBB) cluster. β-globin associates with α-globin to form adult hemoglobin (HbA, α2β2), the main oxygen-carrier in erythrocytes. When β-globin chains are absent or limiting, free α-globins precipitate and damage cell membranes, causing hemolysis and ineffective erythropoiesis. Clinical data show that severity of β-thal correlates with the number of inherited α-globin genes (HBA1 and HBA2), with α-globin gene deletions having a beneficial effect for patients. Here, we describe a novel strategy to treat β-thal based on genome editing of the α-globin locus in human hematopoietic stem/progenitor cells (HSPCs... More

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