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Controversies on the Consequences of Iron Overload and Chelation in MDS
Francesca Vinchi1, Saskia Hell2, Uwe Platzbecker2,3,4
1Iron Research Program, New York Blood Center, New York, NY, USA.
Abstract:
Many patients with MDS are prone to develop systemic and tissue iron overload in part as a consequence of disease-immanent ineffective erythropoiesis. However, chronic red blood cell transfusions, which are part of the supportive care regimen to correct anemia, are the major source of iron overload in MDS. Increased systemic iron levels eventually lead to the saturation of the physiological systemic iron carrier transferrin and the occurrence of non-transferrin-bound iron (NTBI) together with its reactive fraction, the labile plasma iron (LPI). NTBI/LPI-mediated toxicity and tissue iron overload may exert multiple detrimental effects that contribute to the pathogenesis, complications and eventually evolution of MDS. Until recently, the evidence supporting the use of iron chelation in MDS was based on anecdotal reports, uncontrolled clinical trials or prospective registries. Despite not fully conclusive, these and more recent studies, including the TELESTO trial, unravel an overall adverse action of iron overload and therapeutic benefit of chelation, ranging from improved hematological outcome, reduced transfusion dependence and superior survival of iron-loaded MDS patients. The still limited and somehow controversial experimental and clinical data available from preclinical studies and randomized trials highlight the need for further investigation to fully elucidate the mechanisms underlying the pathological impact of iron overload-mediated toxicity as well as the effect of classic and novel iron restriction approaches in MDS. This review aims at providing an overview of the current clinical and translational debated landscape about the consequences of iron overload and chelation in the setting of MDS.
Insights
Iron overload is common in myelodysplastic syndromes (MDS) due to ineffective erythropoiesis and transfusions. Iron chelation therapy shows promise in improving outcomes for MDS patients with iron overload.
Area of Science:
- Hematology
- Oncology
- Iron Metabolism
Background:
- Myelodysplastic syndromes (MDS) frequently lead to systemic and tissue iron overload.
- Ineffective erythropoiesis and chronic red blood cell transfusions are primary contributors to iron overload in MDS.
- Elevated iron levels result in non-transferrin-bound iron (NTBI) and labile plasma iron (LPI), promoting toxicity.
Purpose of the Study:
- To review the consequences of iron overload in MDS.
- To evaluate the therapeutic benefits and ongoing controversies surrounding iron chelation therapy in MDS.
- To highlight the need for further research into iron overload mechanisms and chelation strategies in MDS.
Main Methods:
- Review of existing literature, including anecdotal reports, uncontrolled trials, registries, and randomized studies like TELESTO.
- Analysis of preclinical and clinical data on iron overload and chelation in MDS.
- Synthesis of current understanding of iron overload-mediated toxicity and iron restriction approaches.
Main Results:
- Iron overload adversely affects MDS pathogenesis, complications, and evolution.
- Iron chelation therapy demonstrates potential benefits, including improved hematological outcomes, reduced transfusion needs, and enhanced survival in iron-loaded MDS patients.
- Evidence supporting chelation, while not fully conclusive, suggests therapeutic advantages.
Conclusions:
- Iron overload is a significant issue in MDS with detrimental effects.
- Iron chelation therapy offers potential clinical benefits for MDS patients.
- Further investigation is crucial to fully understand iron overload toxicity and optimize iron restriction strategies in MDS.
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