Department of Radiobiology and Radiohygiene, National Public Health Center - Radiation Medicine Unit, Budapest, Hungary.
Research Centre for Natural Sciences - Biological Nanochemistry Research Group, Budapest, Hungary.
Br J Radiol. 2020 Nov 1;93(1115):20200319. doi: 10.1259/bjr.20200319. Epub 2020 Sep 30.
Ionising radiation-induced alterations affecting intercellular communication in the bone marrow (BM) contribute to the development of haematological pathologies. Extracellular vesicles (EVs), which are membrane-coated particles released by cells, have important roles in intercellular signalling in the BM. Our objective was to investigate the effects of ionising radiation on the phenotype of BM-derived EVs of total-body irradiated mice.
CBA mice were irradiated with 0.1 Gy or 3 Gy X-rays. BM was isolated from the femur and tibia 24 h after irradiation. EVs were isolated from the BM supernatant. The phenotype of BM cells and EVs was analysed by flow cytometry.
The mean size of BM-derived EVs was below 300 nm and was not altered by ionising radiation. Their phenotype was very heterogeneous with EVs carrying either CD29 or CD44 integrins representing the major fraction. High-dose ionising radiation induced a strong rearrangement in the pool of BM-derived EVs which were markedly different from BM cell pool changes. The proportion of CD29 and CD44 integrin-harbouring EVs significantly decreased and the relative proportion of EVs with haematopoietic stem cell or lymphoid progenitor markers increased. Low-dose irradiation had limited effect on EV secretion.
Ionising radiation induced selective changes in the secretion of EVs by the different BM cell subpopulations.
The novelty of the paper consists of performing a detailed phenotyping of BM-derived EVs after irradiation of mice.
电离辐射引起的骨髓(BM)细胞间通讯改变导致血液病理学的发生。细胞外囊泡(EVs)是由细胞释放的具有膜包裹的颗粒,在 BM 细胞间信号转导中具有重要作用。我们的目的是研究电离辐射对全身照射小鼠 BM 来源 EVs 表型的影响。
CBA 小鼠接受 0.1Gy 或 3Gy X 射线照射。照射后 24 小时从股骨和胫骨中分离 BM。从 BM 上清液中分离 EVs。通过流式细胞术分析 BM 细胞和 EVs 的表型。
BM 来源 EVs 的平均大小低于 300nm,不受电离辐射影响。其表型非常异质,携带 CD29 或 CD44 整合素的 EVs 占主要部分。高剂量电离辐射强烈地重新排列了 BM 来源 EVs 的池,与 BM 细胞池的变化明显不同。CD29 和 CD44 整合素携带 EVs 的比例显著降低,具有造血干细胞或淋巴祖细胞标记物的 EVs 的相对比例增加。低剂量照射对 EV 分泌的影响有限。
电离辐射诱导不同 BM 细胞亚群 EVs 分泌的选择性改变。
本文的新颖之处在于对小鼠照射后 BM 来源 EVs 进行详细的表型分析。