Petin V G, Kapultcevich Yu G
Medical Radiological Research Center, Health Ministry of Russia, 249036 Obninsk, Kaluga Region, Russia.
Medical Radiological Research Center, Health Ministry of Russia, 249036 Obninsk, Kaluga Region, Russia.
Math Biosci. 2014 Jun;252:1-6. doi: 10.1016/j.mbs.2014.03.004. Epub 2014 Mar 15.
To explain different yeast and mammalian cell response to low and high linear energy transfer (LET) radiation in low dose region, the dependence of fine target structure on the stage of cell growth was supposed. Theoretical consideration based on this suggestion was carried out. Results of calculations are qualitatively in agreement with experimental data under assuming that hit-event for both mammalian and yeast cells is a group of ionizations produced by the same ionizing particle. In the dependence of cell cycle phase, sensitive sites (presumable the vulnerable sections of chromosomes) can be located either in periphery of cell nucleus forming a thin layer inside the nucleus or distributed evenly over the whole nucleus. Such rearrangement of the target results in the alteration of the dependence of both survival curve shape and the relative biological effectiveness values on radiation quality.
为了解释不同酵母细胞和哺乳动物细胞在低剂量区域对低和高线性能量传递(LET)辐射的反应,假定精细靶结构取决于细胞生长阶段。基于这一假设进行了理论考量。在假设哺乳动物细胞和酵母细胞的命中事件均为由同一电离粒子产生的一组电离的情况下,计算结果在定性上与实验数据相符。根据细胞周期阶段的不同,敏感位点(推测为染色体的易损区段)可能位于细胞核周边形成核内薄层,或者均匀分布于整个细胞核。这种靶结构的重排导致存活曲线形状以及相对生物效应值对辐射质量的依赖性发生改变。