George Kerry, Durante Marco, Willingham Veronica, Wu Honglu, Yang Tracy C, Cucinotta Francis A
Wyle Laboratories, 1290 Hercules Drive, Houston, Texas 77058, USA.
Radiat Res. 2003 Oct;160(4):425-35. doi: 10.1667/rr3064.
Chromosome aberrations were investigated in human lymphocytes after in vitro exposure to 1H-, 3He-, 12C-, 40Ar-, 28Si-, 56Fe-, or 197Au-ion beams, with LET ranging from approximately 0.4-1393 keV/microm 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/microm, 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.
在体外将人淋巴细胞暴露于1H-、3He-、12C-、40Ar-、28Si-、56Fe-或197Au离子束后,研究了染色体畸变情况,其传能线密度(LET)范围约为0.4 - 1393 keV/μm,剂量范围为0.075 - 3 Gy。使用全染色体探针通过荧光原位杂交(FISH)在照射后的第一次有丝分裂时测量染色体交换的剂量反应曲线,用线性或线性二次函数进行拟合。相对生物效能(RBE)是根据染色体损伤剂量反应曲线相对于低剂量率或高剂量率γ射线的初始斜率来估计的。有丝分裂铺展的RBEmax值估计,对于总交换而言,范围从接近0.7到11.1,随LET增加,在约150 keV/μm处达到最大值,并随LET进一步增加而降低。由于γ射线缺乏初始斜率,复杂畸变的RBE未定义。此外,通过在化学诱导的早熟染色体凝聚(PCC)后的间期测量染色体畸变,研究了有丝分裂延迟对RBE值的影响,其值比中期分析高出三倍。