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Review

Is the Role of Hepcidin and Erythroferrone in the Pathogenesis of Beta Thalassemia the Key to Developing Novel Treatment Strategies?

by
Tsz Yuen Au
1,
Shamiram Benjamin
1 and
Oskar Wojciech Wiśniewski
1,2,*
1
Faculty of Medicine, Poznan University of Medical Sciences, 10 Fredry Street, 61-701 Poznan, Poland
2
Faculty of Health Sciences, Calisia University, 4 Nowy Świat Street, 62-800 Kalisz, Poland
*
Author to whom correspondence should be addressed.
Thalass. Rep. 2022, 12(3), 123-134; https://doi.org/10.3390/thalassrep12030017
Submission received: 7 July 2022 / Revised: 5 September 2022 / Accepted: 7 September 2022 / Published: 9 September 2022

Abstract

Thalassemia is a disease of erythrocytes that varies largely on its genetic composition and associated clinical presentation. Though some patients may remain asymptomatic, those with a complicated course may experience severe anemia early in childhood, carrying into adulthood and requiring recurrent blood transfusions as a pillar of symptom management. Due to the consequences of ineffective erythropoiesis and frequent transfusions, patients with severe beta thalassemia may be subsequently susceptible to hemochromatosis. In light of the established role of hepcidin and erythroferrone in the pathogenesis of beta thalassemia, this review aims to discuss current clinical trials and studies in the field while presenting clinical implications of the HAMP gene polymorphisms and novel treatments. Research suggested incorporating erythroferrone and serum hepcidin testing as a part of routine workups for beta thalassemia, as they could be a predictive tool for early iron accumulation. Furthermore, ameliorating low hepcidin and high erythroferrone appeared to be crucial in treating beta thalassemia and its complications due to iron overload. Currently, hepcidin-like compounds, such as minihepcidins, LJPC-401, PTG-300, VIT-2763, and agents that promote hepcidin production by inhibiting TMPRSS6 expression or erythroferrone, were shown to be effective in restoring iron homeostasis in preliminary studies. Moreover, the natural bioactives astragalus polysaccharide and icariin have been recently recognized as hepcidin expression inductors.
Keywords: beta thalassemia; erythroferrone; HAMP polymorphisms; hepcidin; hemochromatosis; iron homeostasis; iron metabolism beta thalassemia; erythroferrone; HAMP polymorphisms; hepcidin; hemochromatosis; iron homeostasis; iron metabolism

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MDPI and ACS Style

Au, T.Y.; Benjamin, S.; Wiśniewski, O.W. Is the Role of Hepcidin and Erythroferrone in the Pathogenesis of Beta Thalassemia the Key to Developing Novel Treatment Strategies? Thalass. Rep. 2022, 12, 123-134. https://doi.org/10.3390/thalassrep12030017

AMA Style

Au TY, Benjamin S, Wiśniewski OW. Is the Role of Hepcidin and Erythroferrone in the Pathogenesis of Beta Thalassemia the Key to Developing Novel Treatment Strategies? Thalassemia Reports. 2022; 12(3):123-134. https://doi.org/10.3390/thalassrep12030017

Chicago/Turabian Style

Au, Tsz Yuen, Shamiram Benjamin, and Oskar Wojciech Wiśniewski. 2022. "Is the Role of Hepcidin and Erythroferrone in the Pathogenesis of Beta Thalassemia the Key to Developing Novel Treatment Strategies?" Thalassemia Reports 12, no. 3: 123-134. https://doi.org/10.3390/thalassrep12030017

APA Style

Au, T. Y., Benjamin, S., & Wiśniewski, O. W. (2022). Is the Role of Hepcidin and Erythroferrone in the Pathogenesis of Beta Thalassemia the Key to Developing Novel Treatment Strategies? Thalassemia Reports, 12(3), 123-134. https://doi.org/10.3390/thalassrep12030017

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