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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Radiation Leukemogenesis in Mice: Loss of PU.1 on Chromosome 2 in CBA and C57BL/6 Mice after Irradiation with 1 GeVucleon Fe-56 Ions, X Rays or gamma Rays. Part II. Theoretical Considerations Based on Microdosimetry and the Initial Induction of Chromosome Aberrations
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Radiation Leukemogenesis in Mice: Loss of PU.1 on Chromosome 2 in CBA and C57BL/6 Mice after Irradiation with 1 GeVucleon Fe-56 Ions, X Rays or gamma Rays. Part II. Theoretical Considerations Based on Microdosimetry and the Initial Induction of Chromosome Aberrations

机译:小鼠辐射性白血病的发生:用1 GeV /核子Fe-56离子,X射线或γ射线辐照后,CBA和C57BL / 6小鼠的2号染色体上PU.1的损失。第二部分基于微剂量学和染色体畸变的初始归因的理论考虑

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Chromosome aberrations in mitotic bone marrow cells of CBA/Ca and C57BL/6 mice were measured I day after exposure to 1 Gy of 1 GeVucleon Fe-56 ions or 3 Gy of gamma rays. The proportion that have lost a region of chromosome 2 containing the PU.1 gene could be explained by a model based on these measurements. The distribution of aberrations among cells was close to the expected Poisson for the gamma-irradiated cells, but for the HZE Fe-56 ions the distribution was highly dispersed. The observations were consistent with the results of an analysis similar to that of Edwards and co-workers; in 1980 after ex vivo irradiation of human blood with alpha particles. The analysis used to fit the current data was based on a compound Poisson process, also used previously by others, but in addition included the random nature of parameters involved such as cell nuclear diameter, particle traversal lengths through cell nuclei, production of aberrations, and cell cycle arrest per traversal. From the measured numbers of acentric fragments produced, the relative size of chromosome 2 and the region associated with PU.1 deletions, an independent prediction of PU.1 loss agreed well with measurements described in the accompanying paper.
机译:在暴露于1 Gy的1 GeV /核子Fe-56离子或3 Gy的γ射线照射后第1天,测量CBA / Ca和C57BL / 6小鼠的有丝分裂骨髓细胞的染色体畸变。基于这些测量值的模型可以解释丢失包含PU.1基因的2号染色体区域的比例。细胞间的像差分布接近于γ射线照射的细胞的预期泊松分布,但对于HZE Fe-56离子,分布高度分散。观察结果与爱德华兹及其同事的分析结果相符。于1980年在人类血液中用α粒子进行体外照射后。用于拟合当前数据的分析基于复合泊松过程,该过程也曾被其他人使用,但除此之外还包括涉及的参数的随机性质,例如细胞核直径,穿过细胞核的粒子穿越长度,像差产生以及遍历细胞周期停滞。从产生的无心片段的测量数量,2号染色体的相对大小以及与PU.1缺失相关的区域来看,PU.1丢失的独立预测与随附论文中的测量结果非常吻合。

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