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Oxidative Stress and β-Thalassemic Erythroid Cells behind the Molecular Defect

机译:分子缺陷背后的氧化应激和β-Thalassemic红系细胞

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摘要

β-thalassemia is a worldwide distributed monogenic red cell disorder, characterized by the absence or reduced β-globin chain synthesis. Despite the extensive knowledge of the molecular defects causing β-thalassemia, less is known about the mechanisms responsible for the associated ineffective erythropoiesis and reduced red cell survival, which sustain anemia of β-thalassemia. The unbalance of alpha-gamma chain and the presence of pathological free iron promote a severe red cell membrane oxidative stress, which results in abnormal β-thalassemic red cell features. These cells are precociously removed by the macrophage system through two mechanisms: the removal of phosphatidylserine positive cells and through the natural occurring antibody produced against the abnormally clustered membrane protein band 3. In the present review we will discuss the changes in β-thalassemic red cell homeostasis related to the oxidative stress and its connection with production of microparticles and with malaria infection. The reactive oxygen species (ROS) are also involved in ineffective erythropoiesis of β-thalassemia through still partially known pathways. Novel cytoprotective systems such as ASHP, eIF2α, and peroxiredoxin-2 have been suggested to be important against ROS in β-thalassemic erythropoiesis. Finally, we will discuss the results of the major in vitro and in vivo studies with antioxidants in β-thalassemia.
机译:β地中海贫血是一种全球性分布的单基因红细胞疾病,其特征是β珠蛋白链合成缺失或减少。尽管对引起β-地中海贫血的分子缺陷的认识广为人知,但对于引起相关的无效红细胞生成和减少红细胞存活的机制仍知之甚少,这些机制维持了β-地中海贫血。 α-γ链的不平衡和病理性游离铁的存在会促进严重的红细胞膜氧化应激,从而导致异常的β-地中海贫血红细胞特征。这些细胞通过巨噬细胞系统通过两种机制被早熟地去除:磷脂酰丝氨酸阳性细胞的去除以及针对异常聚集的膜蛋白带3产生的天然存在的抗体。在本综述中,我们将讨论β-地中海贫血红细胞的变化与氧化应激有关的稳态及其与微粒产生和疟疾感染的关系。活性氧(ROS)也通过部分已知的途径参与了β地中海贫血的无效红细胞生成。有人提出新颖的细胞保护系统,例如ASHP,eIF2α和peroxiredoxin-2,在 β -地中海贫血红细胞生成中对ROS具有重要意义。最后,我们将讨论 β 地中海贫血中抗氧化剂的体外体内主要研究结果。

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