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Biological effectiveness of accelerated particles for the induction of chromosome damage measured in metaphase and interphase human lymphocytes

机译:加速粒子对人中期和中期人类淋巴细胞中染色体损伤诱导的生物有效性

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Chromosome aberrations were investigated in human lymphocytes after in vitro exposure to H-1-, He-3-, C-12-, Ar-40-, Si-28-, Fe-56-, or Au-197-ion beams, with LET ranging from approximately 0.4-1393 keV/mum in the dose range of 0.075-3 Gy. Dose-response curves for chromosome exchanges, measured at the first mitosis postirradiation using fluorescence in situ hybridization (FISH) with whole-chromosome probes, were fitted with linear or linear-quadratic functions. The relative biological effectiveness (RBE) was estimated from the initial slope of the dose-response curve for chromosomal damage with respect to low- or high-dose-rate gamma rays. Estimates of RBEmax values for mitotic spreads, which ranged from near 0.7 to 11.1 for total exchanges, increased with LET, reaching a maximum at about 150 keV/mum, and decreased with further increase in LET. RBEs for complex aberrations are undefined due to the lack of an initial slope for gamma rays. Additionally, the effect of mitotic delay on RBE values was investigated by measuring chromosome aberrations in interphase after chemically induced premature chromosome condensation (PCC), and values were up to threefold higher than for metaphase analysis. (C) 2003 by Radiation Research Society. [References: 63]
机译:在体外暴露于H-1-,He-3-,C-12-,Ar-40-,Si-28-,Fe-56-或Au-197离子束后,研究了人类淋巴细胞中的染色体畸变,在0.075-3 Gy的剂量范围内,LET的范围约为0.4-1393 keV /μm。使用荧光原位杂交(FISH)和全染色体探针在辐照后的第一个有丝分裂时测量的染色体交换剂量反应曲线具有线性或线性二次函数。从剂量响应曲线相对于低剂量率或高剂量率γ射线的染色体损伤的初始斜率估计相对生物学有效性(RBE)。对于总交换,有丝分裂传播的RBEmax值的估计范围从0.7到11.1,随着LET的增加而增加,达到最大值约150 keV / mum,随着LET的进一步增加而降低。由于缺乏伽玛射线的初始斜率,因此无法定义复杂像差的RBE。此外,通过测量化学诱导的过早染色体凝结(PCC)后的相间染色体畸变,研究了有丝分裂延迟对RBE值的影响,该值比中期分析高三倍。 (C)2003年,辐射研究学会。 [参考:63]

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