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Characteristics of Myeloid Differentiation and Maturation Pathway Derived from Human Hematopoietic Stem Cells Exposed to Different Linear Energy Transfer Radiation Types

机译:从人类造血髓系分化和成熟途径的特点干接触到不同的线性能量转移辐射类型的细胞

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摘要

Exposure of hematopoietic stem/progenitor cells (HSPCs) to ionizing radiation causes a marked suppression of mature functional blood cell production in a linear energy transfer (LET)- and/or dose-dependent manner. However, little information about LET effects on the proliferation and differentiation of HSPCs has been reported. With the aim of characterizing the effects of different types of LET radiations on human myeloid hematopoiesis, in vitro hematopoiesis in Human CD34+ cells exposed to carbon-ion beams or X-rays was compared. Highly purified CD34+ cells exposed to each form of radiation were plated onto semi-solid culture for a myeloid progenitor assay. The surviving fractions of total myeloid progenitors, colony-forming cells (CFC), exposed to carbon-ion beams were significantly lower than of those exposed to X-rays, indicating that CFCs are more sensitive to carbon-ion beams (D 0 = 0.65) than to X-rays (D 0 = 1.07). Similar sensitivities were observed in granulocyte-macrophage and erythroid progenitors, respectively. However, the sensitivities of mixed-type progenitors to both radiation types were similar.In liquid culture for 14 days, no significant difference in total numbers of mononuclear cells was observed between non-irradiated control culture and cells exposed to 0.5 Gy X-rays, whereas 0.5 Gy carbon-ion beams suppressed cell proliferation to 4.9% of the control, a level similar to that for cells exposed to 1.5 Gy X-rays. Cell surface antigens associated with terminal maturation, such as CD13, CD14, and CD15, on harvest from the culture of X-ray-exposed cells were almost the same as those from the non-irradiated control culture. X-rays increased the CD235a+ erythroid-related fraction, whereas carbon-ion beams increased the CD34+CD38 primitive cell fraction and the CD13+CD14+/−CD15 fraction. These results suggest that carbon-ion beams inflict severe damage on the clonal growth of myeloid HSPCs, although the intensity of cell surface antigen expression by mature myeloid cells derived from HSPCs exposed to each type of radiation was similar to that by controls.
机译:造血干/祖细胞(HSPC)暴露于电离辐射会以线性能量转移(LET)和/或剂量依赖性方式显着抑制成熟功能血细胞的产生。但是,关于LET对HSPC增殖和分化的影响的信息很少。为了表征不同类型的LET辐射对人骨髓造血作用的影响,比较了暴露于碳离子束或X射线的人CD34 + 细胞的体外造血作用。将暴露于每种辐射形式的高度纯化的CD34 + 细胞接种到半固体培养物中,以进行骨髓祖细胞测定。暴露于碳离子束的总髓样祖细胞,集落形成细胞(CFC)的存活分数显着低于暴露于X射线的髓样祖细胞,表明CFC对碳离子束更敏感(D 0 = 0.65 ),而不是X射线(D 0 = 1.07)。在粒细胞巨噬细胞和红系祖细胞中分别观察到相似的敏感性。然而,混合型祖细胞对两种辐射类型的敏感性相似。在液体培养14天中,未辐照的对照培养物和暴露于0.5 Gy X射线的细胞之间的单核细胞总数没有显着差异,而0.5 Gy的碳离子束可将细胞增殖抑制至对照组的4.9%,这一水平与暴露于1.5 Gy X射线的细胞的水平相似。从暴露于X射线的细胞培养物中收获的与末端成熟相关的细胞表面抗原,例如CD13,CD14和CD15,与未照射的对照培养物中的抗原几乎相同。 X射线增加CD235a + 红细胞相关分数,而碳离子束增加CD34 + CD38 -原始细胞分数和CD13。 + CD14 +/- CD15 -分数。这些结果表明,碳离子束对髓系HSPC的克隆生长造成了严重损害,尽管源自暴露于每种辐射的HSPC的成熟髓样细胞的细胞表面抗原表达强度与对照相似。

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