1 Wake Forest Institute for Regenerative Medicine, Wake Forest University School of Medicine , Winston-Salem, North Carolina.
2 Biological, Environmental, and Climate Sciences Department, Brookhaven National Laboratory , Upton, New York.
Stem Cells Dev. 2018 Sep 15;27(18):1237-1256. doi: 10.1089/scd.2018.0005. Epub 2018 Apr 26.
The stem cell compartment of the hematopoietic system constitutes one of the most radiosensitive tissues of the body and leukemias represent one of the most frequent radiogenic cancers with short latency periods. As such, leukemias may pose a particular threat to astronauts during prolonged space missions. Control of hematopoiesis is tightly governed by a specialized bone marrow (BM) microenvironment/niche. As such, any environmental insult that damages cells of this niche would be expected to produce pronounced effects on the types and functionality of hematopoietic/immune cells generated. We recently reported that direct exposure of human hematopoietic stem cells (HSC) to simulated solar energetic particle (SEP) and galactic cosmic ray (GCR) radiation dramatically altered the differentiative potential of these cells, and that simulated GCR exposures can directly induce DNA damage and mutations within human HSC, which led to leukemic transformation when these cells repopulated murine recipients. In this study, we performed the first in-depth examination to define changes that occur in mesenchymal stem cells present in the human BM niche following exposure to accelerated protons and iron ions and assess the impact these changes have upon human hematopoiesis. Our data provide compelling evidence that simulated SEP/GCR exposures can also contribute to defective hematopoiesis/immunity through so-called "biological bystander effects" by damaging the stromal cells that comprise the human marrow microenvironment, thereby altering their ability to support normal hematopoiesis.
造血系统的干细胞区室构成了体内对辐射最敏感的组织之一,而白血病是潜伏期最短的最常见的放射性致癌物质之一。因此,白血病可能会对长期太空任务中的宇航员构成特殊威胁。造血的控制受到专门的骨髓(BM)微环境/生态位的严格控制。因此,预计任何损害该生态位细胞的环境损伤都会对产生的造血/免疫细胞的类型和功能产生明显影响。我们最近报告说,人类造血干细胞(HSC)直接暴露于模拟太阳高能粒子(SEP)和银河宇宙射线(GCR)辐射会极大地改变这些细胞的分化潜能,并且模拟 GCR 暴露可以直接在人类 HSC 内诱导 DNA 损伤和突变,当这些细胞重新填充受鼠接受者时,导致白血病转化。在这项研究中,我们进行了首次深入检查,以确定暴露于加速质子和铁离子后存在于人类 BM 生态位中的间充质干细胞发生的变化,并评估这些变化对人类造血的影响。我们的数据提供了令人信服的证据,表明模拟 SEP/GCR 暴露也可以通过损害构成人类骨髓微环境的基质细胞来导致有缺陷的造血/免疫,从而改变它们支持正常造血的能力,从而通过所谓的“生物旁观者效应”来导致有缺陷的造血/免疫。