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ROS-mediated iron overload injures the hematopoiesis of bone marrow by damaging hematopoietic stem/progenitor cells in mice

机译:ROS介导的铁过载通过损坏小鼠造血干/祖细胞的造血干/祖细胞损伤骨髓的血肿

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Iron overload, caused by hereditary hemochromatosis or repeated blood transfusions in some diseases, such as beta thalassemia, bone marrow failure and myelodysplastic syndrome, can significantly induce injured bone marrow (BM) function as well as parenchyma organ dysfunctions. However, the effect of iron overload and its mechanism remain elusive. In this study, we investigated the effects of iron overload on the hematopoietic stem and progenitor cells (HSPCs) from a mouse model. Our results showed that iron overload markedly decreased the ratio and clonogenic function of murine HSPCs by the elevation of reactive oxygen species (ROS). This finding is supported by the results of NAC or DFX treatment, which reduced ROS level by inhibiting NOX4 and p38MAPK and improved the long-term and multi-lineage engrafment of iron overload HSCs after transplantation. Therefore, all of these data demonstrate that iron overload injures the hematopoiesis of BM by enhancing ROS through NOX4 and p38MAPK. This will be helpful for the treatment of iron overload in patients with hematopoietic dysfunction.
机译:铁过载,由遗传性血细胞瘤症引起或在某些疾病中反复输血,如β炎血症,骨髓衰竭和髓细胞增生综合征,可以显着诱导受伤的骨髓(BM)功能以及薄壁器官功能障碍。然而,铁过载及其机制的影响仍然难以捉摸。在这项研究中,我们研究了来自小鼠模型的铁过载对造血干细胞和祖细胞(Hspcs)的影响。我们的研究结果表明,铁过载显着降低了电鼠Hspcs的比例和克隆致函数通过反应性氧(ROS)的升高。该发现得到了NAC或DFX治疗的结果支持,其通过抑制NOX4和P38MAPK减少了ROS水平,并改善了移植后铁过载HSCs的长期和多谱系培养。因此,所有这些数据都表明铁过载通过通过NOX4和P38MAPK增强ROS来损害BM的血小缺陷。这将有助于治疗造血功能障碍患者的铁过载。

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