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M-FISH analysis shows that complex chromosome aberrations induced by α-particle tracks are cumulative products of localized rearrangements

机译:M-FISH分析表明,由α粒子轨道诱导的复杂染色体畸变是局部重排的累积产物

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Complex chromosome aberrations are characteristically induced after exposure to low doses of densely ionizing radiation, but little is understood about their formation. To address this issue, we irradiated human peripheral blood lymphocytes in vitro with 0.5 Gy densely ionizing α-particles (mean of 1 α-particle/cell) and analyzed the chromosome aberrations produced by using 24-color multiplex fluorescence in situ hybridization (M-FISH). Our data suggest that complex formation is a consequence of direct nuclear α-particle traversal and show that the likely product of illegitimate repair of damage from a single α-particle is a single complex exchange. From an assessment of the "cycle structure" of each complex exchange we predict α-particle-induced damage to be repaired at specific localized sites, and complexes to be formed as cumulative products of this repair.
机译:暴露于低剂量的密集电离辐射后,通常会诱发复杂的染色体畸变,但对其形成了解甚少。为了解决这个问题,我们在体外用0.5 Gy密集电离的α粒子(平均1个α粒子/细胞)照射了人类外周血淋巴细胞,并分析了使用24色多重荧光原位杂交(M-鱼)。我们的数据表明复合物的形成是直接穿过核α粒子的结果,并表明单个α粒子对损伤的非法修复的可能产物是单个复合物交换。通过对每个复合物交换的“循环结构”的评估,我们预测α粒子诱导的损伤将在特定的局部位置修复,并且复合物将形成为这种修复的累积产物。

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