首页> 外文期刊>Experimental Hematology: Official Publication of the International Society for Experimental Hematology >Bone marrow sinusoidal endothelial cells undergo nonapoptotic cell death and are replaced by proliferating sinusoidal cells in situ to maintain the vascular niche following lethal irradiation.
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Bone marrow sinusoidal endothelial cells undergo nonapoptotic cell death and are replaced by proliferating sinusoidal cells in situ to maintain the vascular niche following lethal irradiation.

机译:骨髓正弦血管内皮细胞发生非凋亡性细胞死亡,并被原位增殖的正弦细胞替代,以在致死性辐射后维持血管生境。

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OBJECTIVE: Bone marrow sinusoids remain predominantly host-derived following bone marrow transplantation. Systematic analysis was conducted at the cellular level to investigate how the host sinusoidal structures survived after lethal irradiation. MATERIALS AND METHODS: Apoptosis and cell proliferation assays were performed on bone marrow sections at various time points during the first 2 weeks postirradiation to study the extent of damage to sinusoidal endothelial cells from lethal irradiation and to determine whether cell proliferation contributes to the recovery of the sinusoidal system. RESULTS: Phosphorylated H2AX was present in both hematopoietic and sinusoidal endothelial cells 3 hours after irradiation demonstrating DNA damage. Three days after irradiation, some sinusoidal endothelial cells became terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling -positive, but were caspase-3 and in situ oligo ligation -negative, suggesting nonapoptotic DNA fragmentation. Clusters of sinusoidal endothelial cells that expressed Ki67 appeared 3 days after irradiation, and increased through day 7. These Ki67-positive endothelial cells were host-derived. Bromodeoxyuridine-positive endothelial cells were present in the Ki67-positive areas confirming endothelial cell replication. Twenty percent of the sinusoidal endothelial cells were lost by day 3 after irradiation. The total number of endothelial cells remained relatively unchanged between day 3 and day 14. These results demonstrate that lethal irradiation resulted in limited, nonapoptotic sinusoidal endothelial cell loss, followed by proliferation of preexisting host-derived mature sinusoidal endothelial cells. Our data suggest that DNA repair mechanisms and proliferation of host endothelial cells within the sinusoids are involved in maintenance of the structural integrity of the bone marrow vascular niche following lethal irradiation.
机译:目的:骨髓正弦波在骨髓移植后仍主要来源于宿主。在细胞水平上进行了系统分析,以研究致死性辐射后宿主正弦结构如何存活。材料与方法:在辐照后的前两周内的不同时间点,在骨髓切片上进行凋亡和细胞增殖分析,以研究致命辐射对窦性内皮细胞的损害程度,并确定细胞增殖是否有助于癌细胞的恢复。正弦曲线系统。结果:辐射后3小时,造血和正弦血管内皮细胞中都存在磷酸化的H2AX,表明DNA损伤。辐照后三天,一些正弦血管内皮细胞变为末端脱氧核苷酸转移酶介导的dUTP缺口末端标记阳性,但caspase-3和原位寡聚连接阴性,提示非凋亡性DNA断裂。表达Ki67的窦状内皮细胞簇在照射后3天出现,并在第7天增加。这些Ki67阳性内皮细胞是宿主来源的。 Ki67阳性区域中存在溴脱氧尿苷阳性的内皮细胞,证实了内皮细胞的复制。照射后第3天,有20%的窦状内皮细胞丢失。在第3天和第14天之间,内皮细胞的总数保持相对不变。这些结果表明,致命的辐射导致有限的,非凋亡的窦状内皮细胞损失,然后增殖先前存在的宿主衍生的成熟窦状内皮细胞。我们的数据表明,在致命辐射后,DNA修复机制和正弦波内宿主内皮细胞的增殖参与了骨髓血管壁位结构完整性的维持。

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