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首页> 外文期刊>Bone Marrow Research >Innovative Analyses Support a Role for DNA Damage and an Aberrant Cell Cycle in Myelodysplastic Syndrome Pathogenesis
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Innovative Analyses Support a Role for DNA Damage and an Aberrant Cell Cycle in Myelodysplastic Syndrome Pathogenesis

机译:创新性分析支持DNA损伤和异常细胞周期在骨髓增生异常综合症发病机制中的作用

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摘要

We used flow cytometry to analyze the cell cycle, DNA damage, and apoptosis in hematopoietic subsets in MDS marrow. Subsets were assigned using CD45, side scatter, CD34, and CD71. Cell cycle fractions were analyzed using DRAQ 5 (DNA content) and MPM-2 (mitoses). DNA damage was assessed using p-H2A.X, and apoptosis using Annexin V. Compared to controls, MDS patients demonstrated no increased mitoses in erythroid, myeloid, or CD34+ cells. Myeloid progenitors demonstrated increased G2 cells, which with no increased mitoses suggested delayed passage through G2. Myeloid progenitors demonstrated increased p-H2A.X, consistent with DNA damage causing this delay. Annexin V reactivity was equivalent in MDS and controls. Results for each parameter varied among hematopoietic compartments, demonstrating the need to analyze compartments separately. Our results suggest that peripheral cytopenias in MDS are due to delayed cell cycle passage of marrow progenitors and that this delayed passage and leukemic progression derive from excessive DNA damage.
机译:我们使用流式细胞仪分析了MDS骨髓中造血亚群的细胞周期,DNA损伤和凋亡。使用CD45,侧面散射,CD34和CD71分配子集。使用DRAQ 5(DNA含量)和MPM-2(有丝分裂)分析细胞周期分数。使用p-H2A.X评估DNA损伤,使用Annexin V评估细胞凋亡。与对照组相比,MDS患者在红系,髓样或CD34 +细胞中无丝分裂增加。髓样祖细胞显示G2细胞增加,而没有丝分裂增加则表明通过G2的时间延迟。髓样祖细胞显示p-H2A.X增加,与导致这种延迟的DNA损伤一致。 Annexin V反应性在MDS和对照中是等效的。造血区室中每个参数的结果各不相同,这表明需要分别分析区室。我们的结果表明,MDS中的外周血细胞减少症是由于骨髓祖细胞的细胞周期传递延迟所致,并且这种延迟的传递和白血病进展源自DNA过度损伤。

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