Cao Yi, Xu Qian, Lu Min-xia, Jin Zong-da, Du Hou-bing, Li Jian-xiang, Nie Ji-hua, Tong Jian
School of Radiation Medicine and Public Health, Sowchow University, Suzhou 215123, China.
Zhonghua Lao Dong Wei Sheng Zhi Ye Bing Za Zhi. 2009 Sep;27(9):525-9.
To investigate antagonistic effect of microwave on hematopoietic damage of mice induced by gamma-ray irradiation.
Male healthy Kunning mice were treated with low dose microwave radiation before exposure to (60)Co gamma-ray irradiation of 8.0 Gy. The 30-day survival rate and average survival time of the mice after the treatment were examined. Peripheral blood parameters and the organ indexes of thymus and spleen were also observed in the irradiated mice. After exposure to 5.0 Gy gamma irradiation, indexes of hematopoietic foci formation of bone marrow cells (CFU-GM) and the proliferation activity of BMNCs were examined. The serum concentration of hemopoietic factors (GM-CSF and IL-3) were detected by ELISA kits.
Pre-exposure with 120 microW/cm(2) 900 MHz microwave increased the 30-day survival rate (P < 0.05) and the number of white blood cells of gamma-ray treated mice. The increases of the organ indexes of thymus and spleen, proliferation activity of BMNCs and CFU-GM hematopoietic foci numbers, as well as the higher serum concentration of GM-CSF and IL-3 were observed in the microwave pre-exposure group.
Low dose microwave radiation may exert potential antagonistic effects on hematopoietic injuries induced by ionizing radiation. The underlying mechanisms might be related with stimulation of hematopoietic growth factors expression, promotion of HSCs/HPCs proliferation, suppression on the reduction of HSCs/HPCs caused by (60)Co gamma-ray, and enhanced construction of the hematopoietic system.
探讨微波对γ射线照射所致小鼠造血损伤的拮抗作用。
雄性健康昆明小鼠在接受8.0 Gy的(60)Coγ射线照射前,先进行低剂量微波辐射处理。检测处理后小鼠的30天生存率和平均生存时间。观察受照射小鼠的外周血参数以及胸腺和脾脏的器官指数。在接受5.0 Gyγ射线照射后,检测骨髓细胞造血灶形成指标(CFU-GM)和骨髓单个核细胞的增殖活性。采用ELISA试剂盒检测造血因子(GM-CSF和IL-3)的血清浓度。
预先暴露于120 μW/cm² 900 MHz微波可提高γ射线处理小鼠的30天生存率(P < 0.05)和白细胞数量。微波预先暴露组小鼠的胸腺和脾脏器官指数增加、骨髓单个核细胞增殖活性和CFU-GM造血灶数量增加,以及GM-CSF和IL-3血清浓度升高。
低剂量微波辐射可能对电离辐射所致的造血损伤具有潜在的拮抗作用。其潜在机制可能与刺激造血生长因子表达、促进造血干细胞/祖细胞增殖、抑制(60)Coγ射线导致的造血干细胞/祖细胞减少以及增强造血系统构建有关。