The rapid advances in the field of genome editing using targeted endonucleases have called considerable attention to the potential of this technology for human gene therapy. Targeted correction of disease-causing mutations could ensure lifelong, tissue-specific expression of the relevant gene, thereby alleviating or resolving a specific disease phenotype. In this review, we aim to explore the potential of this technology for the therapy of β-thalassemia. This blood disorder is caused by mutations in the gene encoding the β-globin chain of hemoglobin, leading to severe anemia in affected patients. Curative allogeneic bone marrow transplantation is available only to a small subset of patients, leaving the majority of patients dependent on reg...
β-Thalassemia is one of the most common inherited anemias, with no effective cure for most patients....
Investigations to understand the function and control of the globin genes have led to some of the mo...
β-Thalassaemia is caused by over 300 mutations in and around the β-globin gene that lead to impaired...
The rapid advances in the field of genome editing using targeted endonucleases have called considera...
© 2018 Dr. Astrid GlaserThe β-haemoglobinopathies, caused by insufficient synthesis (β-thalassaemia)...
The β-thalassemias are a group of hereditary hematological diseases caused by over 300 mutations of ...
Gene therapy for β-Thalassemia and sickle-cell disease is based on transplantation of genetically co...
Gene therapy for β-Thalassemia and sickle-cell disease is based on transplantation of genetically co...
β-thalassemia is characterized by reduced or absence of β-globin production, resulting in anemia. Cu...
β-thalassemias are among the most common inherited monogenic disorders worldwide due to mutations in...
The thalassaemias are the most common monogenic disorders worldwide. Both α- and β-thalassaemia are ...
BackgroundDonor availability and transplantation-related risks limit the broad use of allogeneic hem...
International audienceAbstract β-thalassemias (β-thal) are a group of blood disorders caused by muta...
International audienceAbstract β-thalassemias (β-thal) are a group of blood disorders caused by muta...
BACKGROUND:Donor availability and transplantation-related risks limit the broad use of allogeneic he...
β-Thalassemia is one of the most common inherited anemias, with no effective cure for most patients....
Investigations to understand the function and control of the globin genes have led to some of the mo...
β-Thalassaemia is caused by over 300 mutations in and around the β-globin gene that lead to impaired...
The rapid advances in the field of genome editing using targeted endonucleases have called considera...
© 2018 Dr. Astrid GlaserThe β-haemoglobinopathies, caused by insufficient synthesis (β-thalassaemia)...
The β-thalassemias are a group of hereditary hematological diseases caused by over 300 mutations of ...
Gene therapy for β-Thalassemia and sickle-cell disease is based on transplantation of genetically co...
Gene therapy for β-Thalassemia and sickle-cell disease is based on transplantation of genetically co...
β-thalassemia is characterized by reduced or absence of β-globin production, resulting in anemia. Cu...
β-thalassemias are among the most common inherited monogenic disorders worldwide due to mutations in...
The thalassaemias are the most common monogenic disorders worldwide. Both α- and β-thalassaemia are ...
BackgroundDonor availability and transplantation-related risks limit the broad use of allogeneic hem...
International audienceAbstract β-thalassemias (β-thal) are a group of blood disorders caused by muta...
International audienceAbstract β-thalassemias (β-thal) are a group of blood disorders caused by muta...
BACKGROUND:Donor availability and transplantation-related risks limit the broad use of allogeneic he...
β-Thalassemia is one of the most common inherited anemias, with no effective cure for most patients....
Investigations to understand the function and control of the globin genes have led to some of the mo...
β-Thalassaemia is caused by over 300 mutations in and around the β-globin gene that lead to impaired...