Weill Cornell Medical College, New York, New York, USA.
J Clin Invest. 2010 Dec;120(12):4466-77. doi: 10.1172/JCI41717. Epub 2010 Nov 22.
Excessive iron absorption is one of the main features of β-thalassemia and can lead to severe morbidity and mortality. Serial analyses of β-thalassemic mice indicate that while hemoglobin levels decrease over time, the concentration of iron in the liver, spleen, and kidneys markedly increases. Iron overload is associated with low levels of hepcidin, a peptide that regulates iron metabolism by triggering degradation of ferroportin, an iron-transport protein localized on absorptive enterocytes as well as hepatocytes and macrophages. Patients with β-thalassemia also have low hepcidin levels. These observations led us to hypothesize that more iron is absorbed in β-thalassemia than is required for erythropoiesis and that increasing the concentration of hepcidin in the body of such patients might be therapeutic, limiting iron overload. Here we demonstrate that a moderate increase in expression of hepcidin in β-thalassemic mice limits iron overload, decreases formation of insoluble membrane-bound globins and reactive oxygen species, and improves anemia. Mice with increased hepcidin expression also demonstrated an increase in the lifespan of their red cells, reversal of ineffective erythropoiesis and splenomegaly, and an increase in total hemoglobin levels. These data led us to suggest that therapeutics that could increase hepcidin levels or act as hepcidin agonists might help treat the abnormal iron absorption in individuals with β-thalassemia and related disorders.
铁吸收过度是β-地中海贫血的主要特征之一,可导致严重的发病率和死亡率。对β-地中海贫血小鼠的系列分析表明,尽管血红蛋白水平随时间逐渐下降,但肝脏、脾脏和肾脏中的铁浓度明显增加。铁过载与低水平的铁调素有关,铁调素是一种调节铁代谢的肽,通过触发铁转运蛋白 Ferroportin 的降解来实现,该蛋白定位于吸收性肠细胞以及肝细胞和巨噬细胞。β-地中海贫血患者的铁调素水平也较低。这些观察结果使我们假设,β-地中海贫血患者吸收的铁比造血所需的铁更多,并且增加此类患者体内铁调素的浓度可能具有治疗作用,可以限制铁过载。在这里,我们证明了在β-地中海贫血小鼠中适度增加铁调素的表达可以限制铁过载,减少不溶性膜结合珠蛋白和活性氧的形成,并改善贫血。铁调素表达增加的小鼠还表现出其红细胞寿命延长、无效造血和脾肿大逆转以及总血红蛋白水平增加。这些数据使我们提出这样的假设,即能够增加铁调素水平或作为铁调素激动剂的治疗方法可能有助于治疗β-地中海贫血和相关疾病患者的异常铁吸收。