University of Primorska, Faculty of Health Science, Izola, Slovenia.
Radiol Oncol. 2013 Oct 8;47(4):376-81. doi: 10.2478/raon-2013-0058. eCollection 2013.
Long term effects of different doses of ionizing radiation on human skeletal muscle myoblast proliferation, cytokine signalling and stress response capacity were studied in primary cell cultures.
Human skeletal muscle myoblasts obtained from muscle biopsies were cultured and irradiated with a Darpac 2000 X-ray unit at doses of 4, 6 and 8 Gy. Acute effects of radiation were studied by interleukin - 6 (IL-6) release and stress response detected by the heat shock protein (HSP) level, while long term effects were followed by proliferation capacity and cell death.
Compared with non-irradiated control and cells treated with inhibitor of cell proliferation Ara C, myoblast proliferation decreased 72 h post-irradiation, this effect was more pronounced with increasing doses. Post-irradiation myoblast survival determined by measurement of released LDH enzyme activity revealed increased activity after exposure to irradiation. The acute response of myoblasts to lower doses of irradiation (4 and 6 Gy) was decreased secretion of constitutive IL-6. Higher doses of irradiation triggered a stress response in myoblasts, determined by increased levels of stress markers (HSPs 27 and 70).
Our results show that myoblasts are sensitive to irradiation in terms of their proliferation capacity and capacity to secret IL-6. Since myoblast proliferation and differentiation are a key stage in muscle regeneration, this effect of irradiation needs to be taken in account, particularly in certain clinical conditions.
本研究旨在探讨不同剂量电离辐射对人骨骼肌成肌细胞增殖、细胞因子信号转导和应激反应能力的长期影响。
从肌肉活检中获得人骨骼肌成肌细胞,在 Darpac 2000 X 射线仪下分别用 4、6 和 8 Gy 进行照射。通过白细胞介素 6(IL-6)释放研究辐射的急性效应,通过热休克蛋白(HSP)水平检测应激反应,同时通过增殖能力和细胞死亡来观察长期效应。
与未照射对照和用细胞增殖抑制剂 Ara C 处理的细胞相比,照射后 72 小时成肌细胞增殖减少,随着剂量的增加,这种效应更加明显。通过测量释放的 LDH 酶活性来确定照射后成肌细胞的存活情况,结果显示照射后酶活性增加。较低剂量(4 和 6 Gy)照射的成肌细胞急性反应是细胞因子 IL-6 分泌减少。较高剂量的照射会引发成肌细胞的应激反应,这可以通过应激标志物(HSP27 和 HSP70)水平的升高来确定。
我们的结果表明,成肌细胞的增殖能力和分泌 IL-6 的能力对辐射敏感。由于成肌细胞的增殖和分化是肌肉再生的关键阶段,因此需要考虑这种照射的影响,特别是在某些临床情况下。