首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Bone Marrow Endothelial Cells Influence Function and Phenotype of Hematopoietic Stem and Progenitor Cells after Mixed Neutron/Gamma Radiation
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Bone Marrow Endothelial Cells Influence Function and Phenotype of Hematopoietic Stem and Progenitor Cells after Mixed Neutron/Gamma Radiation

机译:中子/γ混合辐射对骨髓内皮细胞功能及造血干细胞和祖细胞表型的影响

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摘要

The bone marrow (BM) microenvironment plays a crucial role in the maintenance and regeneration of hematopoietic stem (HSC) and progenitor cells (HSPC). In particular, the vascular niche is responsible for regulating HSC maintenance, differentiation, and migration of cells in and out of the BM. Damage to this niche upon exposure to ionizing radiation, whether accidental or as a result of therapy, can contribute to delays in HSC recovery and/or function. The ability of BM derived-endothelial cells (BMEC) to alter and/or protect HSPC after exposure to ionizing radiation was investigated. Our data show that exposure of BMEC to ionizing radiation resulted in alterations in Akt signaling, increased expression of PARP-1, IL6, and MCP-1, and decreased expression of MMP1 and MMP9. In addition, global analysis of gene expression of HSC and BMEC in response to mixed neutron/gamma field (MF) radiation identified 60 genes whose expression was altered after radiation in both cell types, suggesting that a subset of genes is commonly affected by this type of radiation. Focused gene analysis by RT-PCR revealed two categories of BMEC alterations: (a) a subset of genes whose expression was altered in response to radiation, with no additional effect observed during coculture with HSPC, and (b) a subset of genes upregulated in response to radiation, and altered when cocultured with HSPC. Coculture of BMEC with CD34+ HSPC induced HSPC proliferation, and improved BM function after MF radiation. Nonirradiated HSPC exhibited reduced CD34 expression over time, but when irradiated, they maintained higher CD34 expression. Nonirradiated HSPC cocultured with nonirradiated BMEC expressed lower levels of CD34 expression compared to nonirradiated alone. These data characterize the role of each cell type in response to MF radiation and demonstrate the interdependence of each cell’s response to ionizing radiation. The identified genes modulated by radiation and coculture provide guidance for future experiments to test hypotheses concerning specific factors mediating the beneficial effects of BMEC on HSPC. This information will prove useful in the search for medical countermeasures to radiation-induced hematopoietic injury.
机译:骨髓(BM)微环境在造血干细胞(HSC)和祖细胞(HSPC)的维持和再生中起着至关重要的作用。特别是,血管生态位负责调节HSC的维持,分化以及细胞向BM内外的迁移。暴露于电离辐射后,无论是偶然的还是由于治疗而导致的对小生境的损害都可能导致HSC恢复和/或功能延迟。研究了BM衍生内皮细胞(BMEC)在暴露于电离辐射后改变和/或保护HSPC的能力。我们的数据表明,BMEC暴露于电离辐射中会导致Akt信号传导发生变化,PARP-1,IL6和MCP-1的表达增加,以及MMP1和MMP9的表达减少。此外,对HSC和BMEC的基因表达进行整体分析以响应混合中子/伽马场(MF)辐射,鉴定出60种基因,两种细胞类型在辐射后其表达均发生了改变,这表明该基因通常会影响一部分基因辐射。通过RT-PCR进行的重点基因分析显示了BMEC改变的两类:(a)其表达随辐射而改变的基因子集,在与HSPC共培养期间未观察到其他作用,以及(b)对辐射的反应,与HSPC共培养时会发生变化。 BMEC与CD34 + HSPC的共培养可诱导HSPC增殖,并在MF辐射后改善BM功能。未辐照的HSPC随时间推移显示出降低的CD34表达,但是当辐照时,它们保持较高的CD34表达。与未辐照的BMEC共培养的未辐照的HSPC与单独辐照的相比,其CD34表达水平较低。这些数据表征了每种细胞对MF辐射的响应作用,并证明了每种细胞对电离辐射的响应之间的相互依赖性。鉴定出的受辐射和共培养调节的基因为将来的实验提供指导,以测试有关介导BMEC对HSPC有益作用的特定因素的假设。该信息将有助于寻找针对放射线引起的造血损伤的医学对策。

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