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小鼠骨髓细胞对宽剂量范围短期照射的早期反应

Early Response of Mouse Bone Mrrow Cells to Short-Term Irradiation in a Wide Range of Doses.

作者信息

Ivanov A A, Dorozhkina O V, Vorozhtsova S V, Abrosimova A N, Bulynina T M, Gajewski V N, Ushakov I B, Krasavin E A

出版信息

Radiats Biol Radioecol. 2016 Jul;56(4):389-396.

Abstract

Experiments on mice irradiated with γ-rays in a wide range of doses, from 0.5 to 400 cGy and the bone marrow have shown cytogenetic and cytological effects ranging from I cGy dose 24 hours after exposure to radiation. Dose-independent reduction of the number of nucleated cells in the bone marrow, normal or even elevated levels of mitotic activity, and extreme dependence of the type of chromosomal aberrations on the radiation dose with the maximum in the region of 7.5 cGy were observed in the dose range from 1 to 20 cGy. A linear dose-dependent decrease of the cell.number in the bone marrow, a decreased mitotic activity and increased number of aberrant mitosis were marked in the dose range from 20 to 400 cGy. The findings are discussed in terms of their application for explaining the mechanisms of hormesis, adaptive response, as well as the appropriateness of accounting the parameters studied for solving problems of regulation of permissible doses.

摘要

对接受0.5至400 cGy广泛剂量范围γ射线照射的小鼠及其骨髓进行的实验表明,在辐射暴露后24小时,从1 cGy剂量起就出现了细胞遗传学和细胞学效应。在1至20 cGy剂量范围内,观察到骨髓中有核细胞数量呈剂量非依赖性减少、有丝分裂活性水平正常甚至升高,以及染色体畸变类型对辐射剂量的极端依赖性,在7.5 cGy区域达到最大值。在20至400 cGy剂量范围内,骨髓中的细胞数量呈线性剂量依赖性减少、有丝分裂活性降低且异常有丝分裂数量增加。根据这些研究结果在解释兴奋效应、适应性反应机制方面的应用,以及考虑所研究参数以解决允许剂量调节问题的适用性进行了讨论。

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