β-Thalassemia and Diabetes Mellitus: Current State and Future Directions
Jalal Taneera1, Eglal Mahgoub1, Reem Qannita1
1Sharjah Institute for Medical Research, University of Sharjah, Sharjah, United Arab Emirates.
Insights
Beta-thalassemia major patients face rising diabetes rates due to iron overload impacting pancreatic beta-cells. This review explores the link between thalassemia and diabetes, seeking better prediction and treatment strategies.
Area of Science:
- Hematology
- Endocrinology
- Metabolic Disorders
Background:
- Beta-thalassemia major is a congenital hemoglobinopathy necessitating frequent blood transfusions.
- Transfusion-induced iron overload is a significant complication, particularly affecting pancreatic beta-cells.
- Diabetes mellitus is a prevalent comorbidity in beta-thalassemia patients, despite management efforts.
Conclusions:
- The interplay between beta-thalassemia and diabetes is complex, driven by iron overload and other factors.
- Further research into molecular mechanisms is crucial for identifying novel therapeutic targets.
- Development of predictive biomarkers is essential for early intervention and improved patient outcomes.
Abstract:
β-Thalassemia major is a congenital hemoglobin disorder that requires regular blood transfusion. The disease is often associated with iron overload and diabetes mellitus, among other complications. Pancreatic iron overload in β-thalassemia patients disrupts β-cell function and insulin secretion and induces insulin resistance. Several risk factors, including family history of diabetes, sedentary lifestyle, obesity, gender, and advanced age increase the risk of diabetes in β-thalassemia patients. Precautionary measures such as blood glucose monitoring, anti-diabetic medications, and healthy living in β-thalassemia patients notwithstanding, the prevalence of diabetes in β-thalassemia patients continues to rise. This review aims to address the relationship between β-thalassemia and diabetes in an attempt to understand how the pathology and management of β-thalassemia precipitate diabetes mellitus. The possible employment of surrogate biomarkers for early prediction and intervention is discussed. More work is still needed to better understand the molecular mechanism(s) underlying the link between β-thalassemia and diabetes and to identify novel prognostic and therapeutic targets.
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