间充质干细胞
骨髓
间质细胞
流式细胞术
体内
细胞凋亡
辐照
细胞周期
电离辐射
干细胞
粒子辐射
线性能量转移
粒子(生态学)
生物
生物物理学
细胞生物学
化学
癌症研究
免疫学
物理
带电粒子
生物化学
遗传学
核物理学
离子
生态学
有机化学
作者
Alexander Rühle,Dai Ping,Ramon Lopez Perez,Maren Strack,Stephan Brons,Yijia Qin,Jürgen Debus,Patrick Wuchter,Anca‐Ligia Grosu,Peter E. Huber,Nils H. Nicolay
标识
DOI:10.1016/j.canlet.2021.10.015
摘要
The influence of high-linear energy transfer (LET) particle radiation on the functionalities of mesenchymal stromal cells (MSCs) is largely unknown. Here, we analyzed the effects of proton (1H), helium (4He), carbon (12C) and oxygen (16O) ions on human bone marrow-MSCs. Cell cycle distribution and apoptosis induction were examined by flow cytometry, and DNA damage was quantified using γH2AX immunofluorescence and Western blots. Relative biological effectiveness values of MSCs amounted to 1.0–1.1 for 1H, 1.7–2.3 for 4He, 2.9–3.4 for 12C and 2.6–3.3 for 16O. Particle radiation did not alter the MSCs' characteristic surface marker pattern, and MSCs maintained their multi-lineage differentiation capabilities. Apoptosis rates ranged low for all radiation modalities. At 24 h after irradiation, particle radiation-induced ATM and CHK2 phosphorylation as well as γH2AX foci numbers returned to baseline levels. The resistance of human MSCs to high-LET irradiation suggests that MSCs remain functional after exposure to moderate doses of particle radiation as seen in normal tissues after particle radiotherapy or during manned space flights. In the future, in vivo models focusing on long-term consequences of particle irradiation on the bone marrow niche and MSCs are needed.
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