Bahrayni Toosi Mohammad Taghi, Kasiri Afsaneh, Torabinejad Sepehr, Soleymanifard Shokouhozaman, Sankian Mojtaba, Aledavood Seyed Amir, Hosseini Shamili Fazileh, Lavi Fahime
Medical Physics Research Center, Mashhad University of Medical Sciences, Mashhad, Iran.
Department of Medical Physics, Faculty of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.
J Biomed Phys Eng. 2023 Aug 1;13(4):323-332. doi: 10.31661/jbpe.v0i0.2009-1179. eCollection 2023 Aug.
The immune system plays an extensive role in eliminating tumor cells. On the other hand, low-dose irradiation stimulates the immune system.
The present study aimed to investigate the therapeutic outcomes of localized high-dose radiotherapy (LH) alone and combined with total body low-dose irradiation (TB).
In this experimental study, B16F0 tumor cells were injected into the right flank of C57JL/6 mice. The mice were treated with LH alone (13 Gy X-rays to the tumor surface) (LH group) or combined with TB (85 mGy X-rays at the skin) (TB+LH group). Then the tumor volume, the mice's lifespan, the number of lymphocytes extracted from the spleen, and interferon gamma (IFN-γ) production were measured.
Reduced number of lymphocytes, compared to non-irradiated mice (control group), was observed in LH and TB+LH groups. However, the identical number of cultured lymphocytes produced a higher level of IFN-γ in irradiated groups. Comparing the irradiated groups, the number of lymphocytes and their IFN-γ production, tumor growth control, and the mice's lifespan were statistically higher in TB+LH group.
Observing a higher level of IFN-γ in TB+LH group compared to LH group indicates that low-dose radiation enhanced the stimulating effects of high-dose radiation on the immune system. It caused the mice in TB+LH group to have a more prolonged lifespan and a lower tumor growth rate. Therefore, it is worth our attention for future studies to investigate whether total body low-dose irradiation can be utilized before radiotherapy to enhance its efficiency.
免疫系统在清除肿瘤细胞方面发挥着广泛作用。另一方面,低剂量辐射可刺激免疫系统。
本研究旨在探讨局部高剂量放疗(LH)单独应用及联合全身低剂量照射(TB)的治疗效果。
在本实验研究中,将B16F0肿瘤细胞注射到C57JL/6小鼠的右侧腹。小鼠分别接受单独的LH(肿瘤表面13 Gy X射线)(LH组)或联合TB(皮肤85 mGy X射线)(TB+LH组)治疗。然后测量肿瘤体积、小鼠寿命、从脾脏提取的淋巴细胞数量以及干扰素γ(IFN-γ)的产生。
与未照射小鼠(对照组)相比,LH组和TB+LH组的淋巴细胞数量减少。然而,相同数量的培养淋巴细胞在照射组中产生了更高水平的IFN-γ。比较照射组,TB+LH组的淋巴细胞数量及其IFN-γ产生、肿瘤生长控制和小鼠寿命在统计学上更高。
与LH组相比,TB+LH组中IFN-γ水平更高,这表明低剂量辐射增强了高剂量辐射对免疫系统的刺激作用。这使得TB+LH组的小鼠寿命更长,肿瘤生长速率更低。因此,全身低剂量照射在放疗前能否用于提高其疗效,值得未来研究关注。