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MTOR inhibition prevents epithelial stem cell senescence and protects from radiation-induced mucositis

机译:MTOR抑制可防止上皮干细胞衰老并保护免受辐射引起的粘膜炎

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The integrity of the epidermis and mucosal epithelia is highly dependent on resident self-renewing stem cells, which makes them vulnerable to physical and chemical insults compromising the repopulating capacity of the epithelial stem cell compartment. This is frequently the case in cancer patients receiving radiation or chemotherapy, many of whom develop mucositis, a debilitating condition involving painful and deep mucosal ulcerations. Here, we show that inhibiting the mammalian target of rapamycin (mTOR) with rapamycin increases the clonogenic capacity of primary human oral keratinocytes and their resident self-renewing cells by preventing stem cell senescence. This protective effect of rapamycin is mediated by the increase in expression of mitochondrial superoxide dismutase (MnSOD), and the consequent inhibition of ROS formation and oxidative stress. mTOR inhibition also protects from the loss of proliferative basal epithelial stem cells upon ionizing radiation in vivo, thereby preserving the integrity of the oral mucosa and protecting from radiation-induced mucositis.
机译:表皮和粘膜上皮的完整性高度依赖于常驻自我更新的干细胞,这使它们容易受到物理和化学损伤,从而损害上皮干细胞区室的繁殖能力。在接受放射或化学疗法的癌症患者中经常是这种情况,其中许多人发展为粘膜炎,这是一种令人痛苦的疾病,涉及疼痛和深层的粘膜溃疡。在这里,我们表明,雷帕霉素抑制雷帕霉素(mTOR)的哺乳动物靶标可通过防止干细胞衰老来增加人类主要口腔角质形成细胞及其常驻自我更新细胞的克隆能力。雷帕霉素的这种保护作用是通过增加线粒体超氧化物歧化酶(MnSOD)的表达,进而抑制ROS的形成和氧化应激来介导的。当体内电离辐射时,mTOR抑制作用还可以防止增生的基底上皮干细胞丢失,从而保持口腔粘膜的完整性并防止辐射引起的粘膜炎。

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