Anemia of β-thalassemia is caused by ineffective erythropoiesis and reduced red cell survival. Several lines of evidence indicate that iron/heme restriction is a potential therapeutic strategy for the disease. Glycine is a key initial substrate for heme and globin synthesis. We provide evidence that bitopertin, a glycine transport inhibitor administered orally, improves anemia, reduces hemolysis, diminishes ineffective erythropoiesis, and increases red cell survival in a mouse model of β-thalassemia (Hbbth3/+ mice). Bitopertin ameliorates erythroid oxidant damage, as indicated by a reduction in membrane-associated free α-globin chain aggregates, in reactive oxygen species cellular content, in membrane-bound hemichromes, and in heme-regulate...
The pathophysiologic mechanism of sickle cell disease (SCD) involves polymerization of deoxygenated ...
β-thalassemia (β-Thal) is caused by defective β-globin production leading to globin chain imbalance,...
Iron availability for erythropoiesis and its dysregulation in β-thalassemia are incompletely underst...
Anemia of β-thalassemia is caused by ineffective erythropoiesis and reduced red cell survival. Sever...
Anemia of β-thalassemias is caused by ineffective erythropoiesis and reduced red cell survival. Seve...
The unbalanced hemoglobin chain synthesis in beta-thalassemias leads to hemichrome-induced damage th...
Haematologica 2015 [Epub ahead of print] Citation: Casu C, Aghajan M, Rea Oikonomidou P, Guo S, Moni...
Bitopertin is a small molecule selective inhibitor of glycine transporter 1 (GlyT1), initially devel...
Excessive iron absorption is one of the main features of β-thalassemia and can lead to severe morbid...
International audienceAnemia in β-thalassemia is related to ineffective erythropoiesis and reduced r...
Iron is crucial for many biological functions, but quantitatively the most important use of iron is ...
Luspatercept, a ligand-trapping fusion protein, binds select TGF-β superfamily ligands implicated in...
The main characteristic of the pathophysiology of β-thalassemia is reduced β-globin chain production...
Iron overload results in significant morbidity and mortality in beta-thalassemic patients. Insuffici...
β-thalassaemia is a rare genetic condition caused by mutations in the β-globin gene that result in s...
The pathophysiologic mechanism of sickle cell disease (SCD) involves polymerization of deoxygenated ...
β-thalassemia (β-Thal) is caused by defective β-globin production leading to globin chain imbalance,...
Iron availability for erythropoiesis and its dysregulation in β-thalassemia are incompletely underst...
Anemia of β-thalassemia is caused by ineffective erythropoiesis and reduced red cell survival. Sever...
Anemia of β-thalassemias is caused by ineffective erythropoiesis and reduced red cell survival. Seve...
The unbalanced hemoglobin chain synthesis in beta-thalassemias leads to hemichrome-induced damage th...
Haematologica 2015 [Epub ahead of print] Citation: Casu C, Aghajan M, Rea Oikonomidou P, Guo S, Moni...
Bitopertin is a small molecule selective inhibitor of glycine transporter 1 (GlyT1), initially devel...
Excessive iron absorption is one of the main features of β-thalassemia and can lead to severe morbid...
International audienceAnemia in β-thalassemia is related to ineffective erythropoiesis and reduced r...
Iron is crucial for many biological functions, but quantitatively the most important use of iron is ...
Luspatercept, a ligand-trapping fusion protein, binds select TGF-β superfamily ligands implicated in...
The main characteristic of the pathophysiology of β-thalassemia is reduced β-globin chain production...
Iron overload results in significant morbidity and mortality in beta-thalassemic patients. Insuffici...
β-thalassaemia is a rare genetic condition caused by mutations in the β-globin gene that result in s...
The pathophysiologic mechanism of sickle cell disease (SCD) involves polymerization of deoxygenated ...
β-thalassemia (β-Thal) is caused by defective β-globin production leading to globin chain imbalance,...
Iron availability for erythropoiesis and its dysregulation in β-thalassemia are incompletely underst...