Iron metabolism and ineffective erythropoiesis in β‐thalassemia mouse models
Pedro Luiz Ramos, Luca Melchiori, Sara Gardenghi, Nico Van‐Roijen, Robert W. Grady, Yelena Ginzburg, Stefano Rivella
Abstract
Pedro Luiz Ramos, Luca Melchiori, Sara Gardenghi, Nico Van‐Roijen, Robert W. Grady, Yelena Ginzburg, Stefano Rivella
Abstract
beta-thalassemia is a disease associated with decreased beta-globin production leading to anemia, ineffective erythropoiesis, and iron overload. New mechanisms associated with modulation of erythropoiesis and iron metabolism have recently been discovered in thalassemic mice, improving our understanding of the pathophysiology of this disease. These discoveries have the potential to be translated into clinically-relevant therapeutic options to reduce ineffective erythropoiesis and iron overload. A new generation of therapies based on limiting ineffective erythropoiesis, iron absorption, and the correction of iron maldistribution could be on the way, possibly complementing and improving the current standard of patient care.
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beta-thalassemia is a disease associated with decreased beta-globin production leading to anemia, ineffective erythropoiesis, and iron overload. New mechanisms associated with modulation of erythropoiesis and iron metabolism have recently been discovered in thalassemic mice, improving our understanding of the pathophysiology of this disease. These discoveries have the potential to be translated into clinically-relevant therapeutic options to reduce ineffective erythropoiesis and iron overload. A new generation of therapies based on limiting ineffective erythropoiesis, iron absorption, and the correction of iron maldistribution could be on the way, possibly complementing and improving the current standard of patient care.
Key concepts: Erythropoiesis, Ineffective erythropoiesis, Anemia, Thalassemia, Limiting, Hepcidin, Disease, Medicine