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Autophagy prevents irradiation injury and maintains stemness through decreasing ROS generation in mesenchymal stem cells

机译:自噬通过减少间充质干细胞中的ROS生成来防止放射损伤并维持干性

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Stem cells were characterized by their stemness: self-renewal and pluripotency. Mesenchymal stem cells (MSCs) are a unique type of adult stem cells that have been proven to be involved in tissue repair, immunoloregulation and tumorigenesis. Irradiation is a well-known factor that leads to functional obstacle in stem cells. However, the mechanism of stemness maintenance in human MSCs exposed to irradiation remains unknown. We demonstrated that irradiation could induce reactive oxygen species (ROS) accumulation that resulted in DNA damage and stemness injury in MSCs. Autophagy induced by starvation or rapamycin can reduce ROS accumulation-associated DNA damage and maintain stemness in MSCs. Further, inhibition of autophagy leads to augment of ROS accumulation and DNA damage, which results in the loss of stemness in MSCs. Our results indicate that autophagy may have an important role in protecting stemness of MSCs from irradiation injury.
机译:干细胞的特征在于其干性:自我更新和多能性。间充质干细胞(MSCs)是一种成年干细胞的独特类型,已被证明与组织修复,免疫调节和肿瘤发生有关。辐照是导致干细胞功能障碍的众所周知的因素。然而,在暴露于辐射的人MSC中维持干性的机制仍然未知。我们证明了辐射可诱导活性氧(ROS)积累,从而导致MSC中DNA损伤和茎干损伤。饥饿或雷帕霉素诱导的自噬可以减少ROS积累相关的DNA损伤并保持MSC的干性。此外,自噬的抑制导致ROS积累和DNA损伤的增加,从而导致MSC失去干性。我们的结果表明自噬可能在保护MSC免受放射损伤的干性中起重要作用。

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